2018~2022年度 文部科学省 科学研究費助成事業
新学術領域研究(研究領域提案型)

Hydrogenomics

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業績

年度:カテゴリ:種別:メンバー:
※計画/公募研究代表者には二重下線、研究分担者には一重下線、corresponding author には左に*印を付しております。

原著論文、総説・解説

  • H. Saitoh
    "Syntheses of novel hydrides containing light elements under high pressure and high temperature"
    Mater. Trans., 64(10), 2400-2409, 2023, DOI:10.2320/matertrans.MT-MH2022007
  • D. Yazaki, *T. Kawawaki, D. Hirayama, M. Kawachi, K. Kato, S. Oguchi, Y. Yamaguchi, S. Kikkawa, Y. Ueki, S. Hossain, D.J. Osborn, F. Ozaki, S. Tanaka, J. Yoshinobu, G.F. Metha, S. Yamazoe, A. Kudo, A. Yamakata, and *Y. Negishi
    "Carbon nitride loaded with an ultrafine, monodisperse, metallic platinum-cluster cocatalyst for the photocatalytic hydrogen-evolution reaction"
    Small, 19(34), 2208287(1-12), 2023, DOI:10.1002/smll.202208287
  • *S. Fukaya, K. Gotoh, T. Matsui, H. Sai, Y. Kurokawa, and *N. Usami
    "Quantitative evaluation of implied open-circuit voltage after metal electrode deposition on TiOX/Si heterostructures by photoluminescence imaging: impact of metallization on passivation performance"
    Jpn. J. Appl. Phys., 62(SK), 1019(1-5), 2023, DOI:10.35848/1347-4065/acc813
  • S. Takaku, R. Nishimura, and *M. Morimoto
    "A turn-on mode fluorescent diarylethene having an azacrown ether receptor: Metal-ion-gated enhancement of the photoreactivity and fluorescence"
    Dyes Pigm., 216, 111354(1-8), 2023, DOI:10.1016/j.dyepig.2023.111354
  • *R.S. Varanasi, *M. Koyama, Y. Shibayama, S. Chiba, S. Ajito, T. Hojo, and E. Akiyama
    "Hydrogen-induced delayed fracture in a 1.5 GPa dual-phase steel via coalescence of surface and sub-surface cracks"
    Metall. Mater. Trans. A, 54(8), 2989-2997, 2023, DOI:10.1007/s11661-023-07096-8
  • M. Yonenga, Y. Kaiwa, K. Oka, K. Oyaizu, and *K. Miyatake
    "All-solid-state rechargeable air batteries using dihydroxybenzoquinone and its polymer as the negative electrode"
    Angew. Chem. Int. Ed., 62(30), e202304366(1-5), 2023, DOI:10.1002/anie.202304366
  • A.F.Z. Abidin and *I. Hamada
    "Oxygen reduction reaction on single-atom catalysts from density functional theory calculations combined with an implicit solvation model"
    J. Phys. Chem. C, 127(28), 13623-13631, 2023, DOI:10.1021/acs.jpcc.3c02224
  • *K. Yamauchi and I. Hamada
    "Hydrogen-induced insulating state accompanied by interlayer charge ordering in SmNiO3"
    Phys. Rev. B, 108(4), 045108(1-6), 2023, DOI:10.1103/PhysRevB.108.045108
  • *S. Ajito, T. Hojo, M. Koyama, S. Hiromoto, and E. Akiyama
    "Environment-assisted cracking of AZ31 magnesium alloy in a borate buffer solution containing ammonium thiocyanate under various potentials"
    Corros. Sci., 218, 111195(1-9), 2023, DOI:10.1016/j.corsci.2023.111195
  • T. Chen, *M. Koyama, Y. Ogawa, H. Matsunaga, and E. Akiyama
    "Martensite boundary characteristics on cycle- and time-dependent fatigue crack growth paths of tempered lath martensitic steels in a 90 MPa gaseous hydrogen atmosphere"
    Metall. Mater. Trans. A, 54(7), 2512-2518, 2023, DOI:10.1007/s11661-023-07041-9
  • B. Dai, Z. Li, M. Xu, J. Li,Y. Lu, J. Zai, L. Fan, S.-W. Park, M. Sasase, *M. Kitano, *H. Hosono, X.-H. Li, *T.-N. Ye, and *J.-S. Chen
    "Encapsulated C12A7 electride material enables multistep electron transfer process for cross-coupling reactions"
    J. Mater. Chem. A, 11(24), 12802-12810, 2023, DOI:10.1039/d2ta08899a
  • T. Kaneko, G.M. Russell, Y. Kawano, *H. Masai, and *J. Terao
    "Fabrication of photoprocessable materials via photopolymerization using an acid-induced photocleavable platinum-acetylide crosslinker"
    Angew. Chem. Int. Ed., 62(26), e202305374(1-8), 2023, DOI:10.1002/anie.202305374
  • Y. Taniguchi, *H.-B. Li, K. Shimoyama, A.N. Hattori, and *H. Tanaka
    "Epitaxial growth of EuNiO3 on SrTiO3 and its application to stacked protonation resistance switching devices"
    Appl. Phys. Lett., 122(26), 263502(1-5), 2023, DOI:10.1063/5.0152640
  • S. Ito, M. Hikichi, N. Noguchi, M. Yuan, Z. Kang, K. Fukuda, M. Miyauchi, I. Matsuda, and *T. Kondo
    "Effective treatment of hydrogen boride sheets for long‐term stabilization"
    Phys. Chem. Chem. Phys., 25(22), 15531-15538, 2023, DOI:10.1039/D3CP01256E
  • L.C.T. Cao, M.-H. Zhou, P. Opaprakasit, P. Sreearunothai, Y. Nagao, S. Boonruang, H. Fallah, *S.-F. Tseng, and *S.H. Hsu
    "Facile fabrication of oxygen-enriched MXene based sensor and their ammonia gas-sensing enhancement"
    Adv. Mater. Interfaces, 10(16), 2300166(1-13), 2023, DOI:10.1002/admi.202300166
  • Y.H. Choi, S.E.M. Putra, Y. Shiozawa, *S. Tanaka, K. Mukai, I. Hamada, Y. Morikawa, and *J. Yoshinobu
    "The quantitative study of methane adsorption on the Pt(997) step surface as the initial process for reforming reactions"
    Surf. Sci., 732, 122284(1-8), 2023, DOI:10.1016/j.susc.2023.122284
  • J.-W. Dai, Y.-Q. Li, *Z.-Y. Li, H.-T. Zhang, C. Herrmann, S. Kumagai, M. Damjanović, M. Enders, H. Nojiri, M. Morimoto, N. Hoshino, T. Akutagawa, and *M. Yamashita
    "Dual-radical-based molecular anisotropy and synergy effect of semi-conductivity and valence tautomerization in a photoswitchable coordination polymer"
    Natl. Sci. Rev., 10(6), nwad047(1-15), 2023, DOI:10.1093/nsr/nwad047
  • Y. Jiang, R. Takashima, T. Nakao, M. Miyazaki, Y. Lu, M. Sasase, Y. Niwa, H. Abe, *M. Kitano, and *H. Hosono
    "Boosted activity of cobalt catalyst for ammonia synthesis with BaAl2O4-xHy electride"
    J. Am. Chem. Soc., 145(19), 10669-10680, 2023, DOI:10.1021/jacs.3c01074
  • S. Kitano, I. Tanabe, N. Shioya, T. Hasegawa, T. Murata, Y. Morita, R. Tsuji, and *K. Fukui
    "Voltammetric and in situ spectroscopic investigations on the redox processes of trioxotriangulene neutral radicals on graphite electrodes"
    Langmuir, 39(19), 6846-6854, 2023, DOI:10.1021/acs.langmuir.3c00438
  • *北條智彦, 菊池護, 秋山英二
    "Al-10%Mg合金の引張特性に及ぼすひずみ速度と内在水素の影響"
    軽金属, 73(5), 223-225, 2023, DOI:10.2464/jilm.73.223
  • *北條智彦, 菊池護, 脇裕之, 秋山英二
    "Al-10%Zn-2.5%Mg-1.6%Cu合金の引張特性に及ぼすひずみ速度と内在水素の影響"
    軽金属, 73(5), 218-222, 2023, DOI:10.2464/jilm.73.218
  • T. Nakanishi, Y. Hori, Y. Shigeta, H. Sato, R. Kiyanagi, K. Munakata, T. Ohhara, and *O. Sato
    "Observation of proton-transfer-coupled spin transition by single-crystal neutron-diffraction measurement"
    Phys. Chem. Chem. Phys., 25(17), 12394-12400, 2023, DOI:10.1039/D3CP00527E
  • H. Sugiyama, M. Miyazaki, M. Sasase, *M. Kitano, and *H. Hosono
    "Room-temperature CO2 hydrogenation to methanol over air-stable hcp-PdMo intermetallic catalyst"
    J. Am. Chem. Soc., 145(17), 9410-9416, 2023, DOI:10.1021/jacs.2c13801
  • Q. Zhuo, X. Zhou, T. Shima, and *Z. Hou
    "Dinitrogen activation and addition to unsaturated C‒E (E = C, N, O, S) bonds mediated by transition metal complexes"
    Angew. Chem. Int. Ed., 62(19), e202218606(1-17), 2023, DOI:10.1002/anie.202218606
  • *Y. Yu, G. Zhang, *Z. Li, J. Wang, Y. Liu, R. Bhardwaj, R. Wadhwa, Y. Nagao, M. Shichiri, and *R. Gao
    "Designed fabrication of active tumor targeting covalent organic framework nanotherapeutics via a simple post-synthetic strategy"
    Nano Res., 16(5), 7085-7094, 2023, DOI:10.1007/s12274-022-5265-7
  • H. Mengwen, S. Yasumura, T. Toyao, K. Shimizu, and *Z. Maeno
    "In- and Ga-oxo clusters/hydrides in zeolites: speciation and catalysis for light-alkane activations/transformations"
    Phys. Chem. Chem. Phys., 25(15), 10211-10230, 2023, DOI:10.1039/D3CP00478C
  • *R. Sato, K. Akagi, S. Takagi, K. Sau, K. Kisu, H. Li, and *S. Orimo
    "Topological data analysis of ion migration mechanism"
    J. Chem. Phys., 158(14), 144116(1-8), 2023, DOI:10.1063/5.0143387
  • R. Akai, *K. Oka, *S. Dekura, K. Yoshimi, H. Mori, R. Nishikubo, A. Saeki, and *N. Tohnai
    "Precise control of the molecular arrangement of organic semiconductors for high charge carrier mobility"
    J. Phys. Chem. Lett., 4(14), 3461-3467, 2023, DOI:10.1021/acs.jpclett.3c00334
  • S. Sugiura, T. Kubo, Y. Haketa, Y. Hori, Y. Shigeta, H. Sakai, T. Hasobe, and *H. Maeda
    "Deprotonation-induced and ion-pairing-modulated diradical properties of partially conjugated pyrrole-quinone conjunction"
    J. Am. Chem. Soc., 145(14), 8122-8129, 2023, DOI:10.1021/jacs.3c01025
  • W. Cai, C. Zhou, X. Hu, T. Jiao, Y. Liu, *L. Li, J. Li, M. Kitano, H. Hosono, and *J. Wu
    "Quasi-two-dimensional intermetallic electride CeRuSi for efficient alkaline hydrogen evolution"
    ACS Catal., 13(7), 4752-4759, 2023, DOI:10.1021/acscatal.2c06382
  • H. Kwon, M. Shiga, H. Kimizuka, and *T. Oda
    "Accurate description of hydrogen diffusivity in bcc metals using machine-learning moment tensor potentials and path-integral methods"
    Acta Mater., 247, 118739(1-11), 2023, DOI:10.1016/j.actamat.2023.118739
  • S. Hossain, D. Hirayama, A. Ikeda, M. Ishimi, S. Funaki, A. Samanta, T. Kawawaki, and *Y. Negishi
    "Atomically precise thiolate-protected gold nanoclusters: Current status of designability of the structure and physicochemical properties"
    Aggregate, 4(2), e255(1-41), 2023, DOI:10.1002/agt2.255
  • 宗井陽平, 堀優太, K. Hengphasatporn, 原田隆平, *重田育照
    "4-hydroxyphenylpyruvate dioxygenase (HPPD)における金属活性中心の力場パラメータの構築とその評価"
    J. Comput. Chem. Jpn., 21(4), 82-84, 2022, DOI:10.2477/jccj.2023-0003
  • *渡辺七都稀, 庄司光男, 堀優太, 重田育照
    "有機分子触媒を用いたアミノ酸ラセミ化反応の理論的研究"
    J. Comput. Chem. Jpn., 21(4), 81-82, 2022, DOI:10.2477/jccj.2023-0004
  • *Y. Hori, A. Sato, and Y. Shigeta
    "Theoretical characterization of the electronic and spin structures for iron–sulfur cubane in reduced high-potential iron–sulfur proteins using density functional theory"
    J. Comput. Chem., Jpn., 21(4), 77-79, 2022, DOI:10.2477/jccj.2023-0008
  • *R.S. Varanasi, *M. Koyama, H. Saitoh, R. Utsumi, T. Sato, S. Orimo, and E. Akiyama
    "Phase transformations and microstructure evolutions during depressurization of hydrogenated Fe–Mn–Si–Cr alloy"
    Int. J. Hydrog. Energy, 48(27), 10081-10088, 2023, DOI:10.1016/j.ijhydene.2022.11.274
  • S. Miyajima, *S. Hossain, A. Ikeda, T. Kosaka, T. Kawawaki, Y. Niihori, *T. Iwasa, T. Taketsugu, and *Y. Negishi
    "Key factors for connecting silver-based icosahedral superatoms by vertex sharing"
    Commun. Chem., 6, 57(1-10), 2023, DOI:10.1038/s42004-023-00854-0
  • H. Saitoh
    "Hydrogen storage by earth-abundant metals"
    MLF Annual Report 2021, 14-16, 2023
  • S. Funaki, *T. Kawawaki, T. Okada, K. Takemae, S. Hossain, Y. Niihori, T. Naito, M. Takagi, T. Shimazaki, S. Kikkawa, S. Yamazoe, M. Tachikawa, and *Y. Negishi
    "Improved activity for the oxygen evolution reaction using a tiara-like thiolate-protected nickel nanocluster"
    Nanoscale, 15(11), 5201-5208, 2023, DOI:10.1039/d2nr06952k
  • T. Amano, T. Yamazaki, R. Akashi, T. Tadano, and S. Tsuneyuki
    "Lattice dielectric properties of rutile TiO2 : First-principles anharmonic self-consistent phonon study"
    Phys. Rev. B, 107(9), 094305(1-12), 2023, DOI:10.1103/PhysRevB.107.094305
  • *齋藤寛之
    "レアメタルを使わない水素吸蔵合金の探索研究"
    月刊 マテリアルステージ, 22(12), 26-31, 2023
  • A.M.A. Mahmoud and *K. Miyatake
    "Highly conductive and ultra alkaline stable anion exchange membranes by superacid-promoted polycondensation for fuel cells"
    ACS Appl. Polym. Mater., 5(3), 2243-2253, 2023, DOI:10.1021/acsapm.2c02227
  • Y. Taniguchi, H.-B. Li, A.N. Hattori, and *H. Tanaka
    "Comprehensive determination of proton diffusion in protonated NdNiO3 thin film by a combination of electrochemical impedance spectroscopy and optical observation"
    Appl. Phys. Express, 16(3), 035501(1-5), 2023, DOI:10.35848/1882-0786/acc004
  • *井上和俊, 小谷元子, 幾原雄一
    "粒界構造の階層性に関する数理的記述"
    表面と真空, 66(3), 146-151, 2023, DOI:10.1380/vss.66.146
  • *K. Sugawara, H. Kusaka, T. Kawakami, K. Yanagizawa, A. Honma, S. Souma, K. Nakayama, M. Miyakawa, T. Taniguchi, M. Kitamura, K. Horiba, H. Kumigashira, T. Takahashi, S. Orimo, M. Toyoda, S. Saito, T. Kondo, and *T. Sato
    "Direct imaging of band structure for powdered rhombohedral boron monosulfide by microfocused ARPES"
    Nano Lett., 23(5), 1673-1679, 2023, DOI:10.1021/acs.nanolett.2c04048
  • W. Takahagi, N. Kitadai, S. Okada, H. Zhou, K. Takai, and *T. Yamada
    "Quantification of polysulfide species in aqueous sulfur thermocell"
    Chem. Lett., 52(3), 197-201, 2023, DOI:10.1246/cl.220486
  • Z.M. Moushumy, M.J. Hassan, M. Ahsan, M. Hasan, N. Uddin, Y. Nagao, and *M.A. Hasnat
    "Photocatalytic degradation of chlorazol yellow dye under sunlight irradiation using Ce, Bi, and N co-doped TiO2 photocatalyst in neutral medium"
    Environ. Sci. Pollut. Res., 30(12), 35153-35169, 2023, DOI:10.1007/s11356-022-24220-0
  • M. Huang, *Z. Maeno, T. Toyao, and *K. Shimizu
    "Ga speciation and ethane dehydrogenation catalysis of Ga-CHA and MOR: Comparative investigation with Ga-MFI"
    Catal. Today, 411-412, 113824(1-9), 2023, DOI:10.1016/j.cattod.2022.06.039
  • W. Larsson, M. Morimoto, M. Irie, *J. Andréasson, and *B. Albinsson
    "Diarylethene isomerization by using triplet–triplet annihilation photon upconversion"
    Chem. Eur. J., 29(13), e20220365(1-6), 2023, DOI:10.1002/chem.202203651
  • *Y. Nakagawa, M. Morimoto, S. Yokojima, S. Nakamura, and *K. Uchida
    "Efficient surface peeling, a photoinduced result of photochromic diarylethene crystal by multistep light irradiation"
    Cryst. Growth Des., 23(3), 1581-1591, 2023, DOI:10.1021/acs.cgd.2c01202
  • Y. Yao, H. Watanabe, M. Hara, S. Nagano, and *Y. Nagao
    "Lyotropic liquid crystalline property and organized structure in high proton-conductive sulfonated semialicyclic oligoimide thin films"
    ACS Omega, 8(8), 7470-7478, 2023, DOI:10.1021/acsomega.2c06398
  • M. Hasan, Z. Li, and *Y. Nagao
    "Palladium nanoparticles combined with reduced graphene oxide and multiwall carbon nanotubes for alkaline ascorbic acid oxidation"
    Jpn. J. Appl. Phys., 62(2), 027003(1-8), 2023, DOI:10.35848/1347-4065/acb897
  • N. Watanabe, K. Miyazaki, M. Toyoda, K. Takeyasu, N. Tsujii, H. Kusaka, A. Yamamoto, S. Saito, M. Miyakawa, T. Taniguchi, T. Aizawa, T. Mori, *M. Miyauchi, and *T. Kondo
    "Rhombohedral boron monosulfide as a p-type semiconductor"
    Molecules, 28(4), 1896(1-9), 2023, DOI:10.3390/molecules28041896
  • *T. Nishikubo, T. Imai, Y. Sakai, M. Mizumaki, S. Kawaguchi, N. Oshime, A. Shimada, K. Sugawara, K. Ohwada, A. Machida, T. Watanuki, K. Kurushima, S. Mori, T. Mizokawa, and *M. Azuma
    "Polar−nonpolar transition-type negative thermal expansion with 11.1% volume shrikage by design"
    Chem. Mater., 35(3), 870-878, 2023, DOI:10.1021/acs.chemmater.2c02304
  • *M. Wakizaka, T. Matsumoto, and *H.-C. Chang
    "Switching of the redox centers of a tris-2-mercaptophenolato chromium(III) metalloligand by a guest metal ion"
    Dalton Trans., 52(6), 1538-1542, 2023, DOI:10.1039/D2DT03502B
  • *後藤和泰, 宇佐美徳隆
    "太陽電池の高性能化に向けたヘテロ界面制御"
    表面と真空, 66(2), 86-90, 2023, DOI:10.1380/vss.66.86
  • T. Kawawaki, Y. Akinaga, D. Yazaki, H. Kameko, D. Hirayama, and *Y. Negishi
    "Promoting photocatalytic carbon dioxide reduction by tuning the properties of cocatalysts"
    Chem. Eur. J., 29(9), e202203387(1-21), 2023, DOI:10.1002/chem.202203387
  • H. Sugiyama, N. Nakamura, S. Watanabe, J. Kim, *M. Kitano, and *H. Hosono
    "Electronic promotion of methanol synthesis over Cu-loaded ZnO-based catalysts"
    J. Phys. Chem. Lett., 14(5), 1259-1264, 2023, DOI:10.1021/acs.jpclett.2c03427
  • A. Sato, *Y. Hori, and *Y. Shigeta
    "Characterization of the geometrical and electronic structures of the active site and its effects on the surrounding environment in reduced high-potential iron–sulfur proteins investigated by the density functional theory approach"
    Inorg. Chem., 62(5), 2040-2048, 2023, DOI:10.1021/acs.inorgchem.2c03617
  • *N. Ishimatsu, K. Ishimoto, K. Sakaki, Y. Nakamura, N. Kawamura, S. Kawaguchi, N. Hirao, and S. Nakano
    "Ferrimagnetic coupling between cobalt and light rare-earth samarium induced by dense hydrogenation of SmCo5 permanent magnet under high pressures"
    Phys. Rev. Mater., 7(2), 024401(1-8), 2023, DOI:10.1103/PhysRevMaterials.7.024401
  • *K. Hatakeyama-Sato, Y. Igarashi, T. Kashikawa, K. Kimura, and *K. Oyaizu
    "Quantum circuit learning as a potential algorithm to predict experimental chemical properties"
    Digital Discovery, 2(1), 165-176, 2023, DOI:10.1039/d2dd00090c
  • M. Ito, *T. Fujino, L. Zhang, S. Yokomori, T. Higashino, R. Makiura, K.J. Takeno, T. Ozaki, and *H. Mori
    "Ambipolar nickel dithiolene complex semiconductors: From one- to two-dimensional electronic structures based upon alkoxy chain lengths"
    J. Am. Chem. Soc., 145(4), 2127-2134, 2023, DOI:10.1021/jacs.2c08015
  • *T. Sato, H. Saitoh, R. Utsumi, J. Ito, Y. Nakahira, K. Obana, S. Takagi, and S. Orimo
    "Hydrogen absorption reactions of hydrogen storage alloy LaNi5 under high pressure"
    Molecules, 28(3), 1256(1-12), 2023, DOI:10.3390/molecules28031256
  • *I.M. Noor, Z.E. Rojudi, M.I.M. Ghazali, N. Tamchek, and Y. Nagao
    "Novel polymer electrolyte based polyurethane acrylate for low-cost perovskite solar cells applications"
    Mol. Cryst. Liq. Cryst., 761(1), 7-21, 2003, DOI:10.1080/15421406.2023.2173770
  • *Y. Ando, T. Nakashima, H. Yin, I. Tateishi, X. Zhang, Y. Tsujikawa, M. Horio, N.T. Cuong, S. Okada, T. Kondo, and *I. Matsuda
    "Prediction of a cyclic hydrogenated boron molecule as a promising building block for borophane"
    Molecules, 28(3), 1225(1-13), 2023, DOI:10.3390/molecules28031225
  • R. Hirota, T. Murayama, R. Katsumi, T. Kawawaki, S. Yabukami, R. Igarashi, Y. Negishi, M. Kusakabe, M. Sekino, T. Yatsui, and *A. Kuwahata
    "Rapid virus detection using magnetic second harmonics of superparamagnetic iron oxide nanoparticles"
    AIP Adv., 13(2), 025144(1-5), 2023, DOI:10.1063/9.0000483
  • 清水克哉
    "高圧力下の超伝導研究"
    熱測定, 50(1), 3-6, 2023
  • Y. Masuda, *M. Koyama, H. Kakinuma, and E. Akiyama
    "Mechanical loading effect on the hydrogen uptake of tempered martensite steel: Elastic strain effect vs. plastic strain effect"
    Mater. Sci. Eng. A, 862, 144486(1-4), 2023, DOI:10.1016/j.msea.2022.144486
  • *齋藤寛之
    "貴金属を使わずにアルミニウムと鉄の合金で水素を蓄える"
    月刊JETI, 71(1), 61-65, 2023
  • *Y. Zhao, R. Sato, and S. Tsuneyuki
    "Accelerating simulated annealing of glassy materials with data assimilation"
    J. Non-Cryst. Solids, 600, 122028(1-6), 2023, DOI:10.1016/j.jnoncrysol.2022.122028
  • K. Tanifuji, S. Ohta, *Y. Ohki, and *H. Seino
    "Activation of unsaturated small molecules by bio-relevant multinuclear metal-sulfur clusters"
    Coord. Chem. Rev., 475, 214838(1-23), 2023, DOI:10.1016/j.ccr.2022.214838
  • M. Murata, T. Koide, O. Kobayashi, S. Hiraoka, T. Shimazaki, and *M. Tachikawa
    "Molecular dynamics study on the structure-property relationship of self-assembled gear-shaped amphiphile molecules with/without methyl groups"
    J. Phys. Chem. B, 127(1), 328-334, 2023, DOI:10.1021/acs.jpcb.2c07444
  • H. Zhou, H. Inoue, M. Ujita, and *T. Yamada
    "Advancement of electrochemical thermoelectric conversion with molecular technology"
    Angew. Chem. Int. Ed., 62(2), e202213449(1-18), 2023, DOI:10.1002/anie.202213449
  • M. Furushima, M. Takagi, D. Yoshida, Y. Kita, T. Shimazaki, and *M. Tachikawa
    "Theoretical investigations of positron affinities and their structure-dependent properties of carbon dioxide clusters (CO2)n (n = 1–5)"
    Phys. Chem. Chem. Phys., 25(1), 625-632, 2023, DOI:10.1039/d2cp03788b
  • K. Okamoto, F. Takeiri, Y. Imai, M. Yonemura, T. Saito, K. Ikeda, T. Otomo, T. Kamiyama, and *G. Kobayashi
    "Impact of Na concentration on the phase transition behavior and H- conductivities in the Ba–Li–Na–H–O oxyhydride system"
    Adv. Sci., 10(1), 2203541(1-7), 2023, DOI:10.1002/advs.202203541
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    日本結晶学会誌, 64(2), 178-181, 2022, DOI:10.5940/jcrsj.64.178
  • 池田一貴, 本田孝志, 大友季哉
    "高強度中性子全散乱装置NOVA による水素貯蔵材料の平均・局所構造解析"
    日本結晶学会誌, 64(2), 174−177, 2022, DOI:10.5940/jcrsj.64.174
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    "XRD回折パターンを利用した水素データ同化分子動力学計算"
    日本結晶学会誌, 64(2), 170-173, 2022, DOI:10.5940/jcrsj.64.170
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    "放射光を利用したアルミニウム-遷移金属合金 水素化物の高温高圧合成"
    日本結晶学会誌, 64(2), 165-169, 2022, DOI:10.5940/jcrsj.64.165
  • 小笠原気八, 北野政明, 細野秀雄
    "岩塩型結晶構造を有するCaNHとNiナノ粒子界面のアニオン欠陥を反応場とするアンモニア分解"
    日本結晶学会誌, 64(2), 160-164, 2022, DOI:10.5940/jcrsj.64.160
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    "ホウ化水素シートの特異な機能"
    日本結晶学会誌, 64(2), 156-159, 2022, DOI:10.5940/jcrsj.64.156
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    "ミニ特集:ハイドロジェノミクスの結晶科学"
    日本結晶学会誌, 64(2), 155, 2022, DOI:10.5940/jcrsj.64.155
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    "Optimal alloying in hydrides: Reaching room-temperature superconductivity in LaH10"
    Phys. Rev. B, 105(17), 174516(1-12), 2022, DOI:10.1103/PhysRevB.105.174516
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    "Quantum and temperature effects on the crystal structure of superhydride LaH10: A path integral molecular dynamics study"
    Phys. Rev. B, 105(17), 174111(1-6), 2022, DOI:10.1103/PhysRevB.105.174111
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    "Tandem effect of two sulfophenylene groups in aromatic polymers for fuel cell membranes"
    ACS Appl. Energy Mater., 5(5), 5525-5530, 2022, DOI:10.1021/acsaem.2c00940
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    "Band-filling effects in single-crystalline oligomer models for doped PEDOT: 3,4- ethylenedioxythiophene (EDOT) dimer salt with hydrogen-bonded infinite sulfate anion chains"
    J. Mater. Chem. C, 10(19), 7543-7551, 2022, DOI:10.1039/d2tc01216b
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    "Selective formation of [Au23(SPhtBu)17]0, [Au26Pd(SPhtBu)20]0 and [Au24Pt(SC2H4Ph)7(SPhtBu)11]0 by controlling ligand-exchange reaction"
    Chem. Sci., 13(19), 5546-5556, 2022, DOI:10.1039/D2SC00423B
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    "Adsorption, desorption, and decomposition of formic acid on Cu(977): The importance of facet of the step"
    J. Phys. Chem. C, 126(19), 8354-8363, 2022, DOI:10.1021/acs.jpcc.2c01948
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    "Unique catalytic mechanism for Ru-loaded ternary intermetallic electrides for ammonia synthesis"
    J. Am. Chem. Soc., 144(19), 8683-8692, 2022, DOI:10.1021/jacs.2c01899
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    "Super Mg2+ conductivity around 10−3 S cm−1 observed in a porous metal−organic framework"
    J. Am. Chem. Soc., 144(19), 8669-8675, 2022, DOI:10.1021/jacs.2c01612
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    "Local structures and dynamics of interfacial imidazolium-based ionic liquid depending on the electrode potential using electrochemical attenuated total reflectance ultraviolet spectroscopy"
    Spectrochim. Acta A Biomol. Spectrosc., 273, 121040(1-7), 2022, DOI:10.1016/j.saa.2022.121040
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    "Structure of liquid and aqueous water isotopologues at ambient temperature from ab initio path integral simulations"
    Phys. Chem. Chem. Phys., 24(18), 10851-10859, 2022, DOI:10.1039/D2CP00499B
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    "Structure of water-in-salt and water-in-bisalt electrolytes"
    Phys. Chem. Chem. Phys., 24(18), 10727-10736, 2022, DOI:10.1039/d2cp00537a
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    "Proton–electron-coupled functionalities of conductivity, magnetism, and optical properties in molecular crystals"
    Chem. Commun., 58(38), 5668-5682, 2022, DOI:10.1039/D1CC06826A
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    "Synergistic effects of hydrogen and deformation temperature on mechanical properties of TRIP-aided bainitic ferrite steel"
    Mater. Sci. Eng. A, 842, 143070(1-11), 2022, DOI:10.1016/j.msea.2022.143070
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    "Sequential pressure-induced B1–B2 transitions in the anion-ordered oxyhydride Ba2YHO3"
    Inorg. Chem., 61(18), 7043-7050, 2022, DOI:10.1021/acs.inorgchem.2c00465
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    "高強度鋼板中の水素拡散挙動に及ぼす張出し加工の影響"
    鉄と鋼, 108(5), 316-324, 2022, DOI:10.2355/tetsutohagane.TETSU-2021-096
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    "Ion-selective adsorption of lead by a two-dimensional terbium oxalate framework"
    Bull. Chem. Soc. Jpn., 95(5), 825-829, 2022, DOI:10.1246/bcsj.20220055
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    "Sulfonated and fluorinated aromatic terpolymers as proton conductive membranes: synthesis, structure, and properties"
    Bull. Chem. Soc. Jpn., 95(5), 707-712, 2022, DOI:10.1246/bcsj.20220057
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    "Cu modified TiO2 catalyst for electrochemical reduction of carbon dioxide to methane"
    Catalysts, 12(5), 478(1-13), 2022, DOI:10.3390/catal12050478
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    "Correlation studies between structural and ionic transport properties of lithium-ion hybrid gel polymer electrolytes based PMMA-PLA"
    J. Polym. Environ., 30(5), 1864-1879, 2022, DOI:10.1007/s10924-021-02317-w
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    "Factors distinguishing hydrogen-assisted intergranular and intergranular-like fractures in a tempered lath martensitic steel"
    Metall. Mater. Trans. A, 53(5), 1645-1658, 2022, DOI:10.1007/s11661-022-06608-2
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    "水素チャージ下引張試験におけるNi-Cr合金の局所塑性発達および破壊挙動に及ぼすCrの影響"
    日本金属学会誌, 86(5), 77-84, 2022, DOI:10.2320/jinstmet.J2021054
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    "Polymers for reversible hydrogen storage inspired by electrode-active materials in organic batteries"
    Int. J. Soc. Mater. Eng. Resour., 25(1), 1-9, 2022, DOI:10.5188/ijsmer.25.1
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    "Conjugation length effect on the conducting behavior of single-crystalline oligo(3,4-ethylenedioxythiophene) (nEDOT) radical cation salts"
    Phys. Chem. Chem. Phys., 24(16), 9130-9134, 2022, DOI:10.1039/D2CC00554A
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    "Low-barrier hydrogen bond in Fujikurin A-D: A computational study"
    ACS Omega, 7(16), 14244-14251, 2022, DOI:10.1021/acsomega.2c00857
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    "Repeatable photoinduced insulator-to-metal transition in yttrium oxyhydride epitaxial thin films"
    Chem. Mater., 34(8), 3616-3623, 2022, DOI:10.1021/acs.chemmater.1c03450
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    "Heterointerface created on Au cluster-loaded unilamellar hydroxide electrocatalysts as a highly active site for the oxygen evolution reaction"
    Adv. Mater., 34(16), 2110552(1-11), 2022, DOI:10.1002/adma.202110552
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    "Dinitrogen cleavage and functionalization with carbon dioxide in a dititanium dihydride framework"
    J. Am. Chem. Soc., 144(15), 6972-6980, 2022, DOI:10.1021/jacs.2c01851
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    "Turn-on mode fluorescent diarylethene containing neopentyl substituents that undergoes all-visible-light switching"
    Chem. Commun., 58(30), 4715-4718, 2022, DOI:10.1039/D2CC00554A
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    "Cracking process in delayed fracture of high-strength steel after long atmospheric exposure"
    ISIJ Int., 62(4), 776-787, 2022, DOI:10.2355/isijinternational.ISIJINT-2021-238
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    "Persistent spin–orbit Mott insulating state in highly compressed post-perovskite CaIrO3"
    J. Phys. Soc. Jpn., 91(4), 045003(1-2), 2022, DOI:10.7566/jpsj.91.045003
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    "Well-designed polyphenylene PEMs with high proton conductivity and chemical and mechanical durability for fuel cells"
    J. Mater. Chem. A, 10(14), 7660-7667, 2022, DOI:10.1039/d1ta10480b
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    J. Am. Chem. Soc., 144(14), 6453-6464, 2022, DOI:10.1021/jacs.2c00976
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    "Properties and morphologies of anion exchange membranes with different lengths of fluorinated hydrophobic chains"
    ACS Omega, 7(16), 13577-13587, 2022, DOI:10.1021/acsomega.1c06958
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    "アルミニウムと鉄で水素を蓄える"
    クリーンエネルギー, 31(4), 28-34, 2022
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    "Effect of changing electronic states of molecules on frequency domain of graphene FETs"
    Appl. Phys. Express, 15(4), 045001(1-5), 2022, DOI:10.35848/1882-0786/ac564d
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    "Poly(vinyl diphenylquinoxaline) as a hydrogen storage material toward rapid hydrogen evolution"
    MRS Commun., 12(2), 213-216, 2022, DOI:10.1557/s43579-022-00164-x
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    "Corrosion monitoring of carbon steel in non-irradiated, humidity-controlled environments simulating gamma-ray irradiation"
    Mater. Trans., 63(4), 555-561, 2022, DOI:10.2320/matertrans.MT-C2021006
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    "Facile fabrication of GCE/Nafion/Ni composite, a robust platform to detect hydrogen peroxide in basic medium via oxidation reaction"
    Talanta, 240, 123202(1-11), 2022, DOI:10.1016/j.talanta.2021.123202
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    J. Solid State Chem., 308, 122904(1-9), 2022, DOI:10.1016/j.jssc.2022.122904
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    "Interface behavior of electrolyte/quinone organic active material in battery operation by Operando surface enhanced raman spectroscopy"
    Langmuir, 38(12), 3951-3958, 2022, DOI:10.1021/acs.langmuir.2c00344
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    "Collaborative approach between explainable artificial intelligence and simplified chemical interactions to explore active ligands for cyclin-dependent kinase 2"
    ACS omega, 7(12), 10372-10381, 2022, DOI:10.1021/acsomega.1c06976
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    "Determination of site occupancy of boronin 6H–SiC by multiple-wavelength neutronholography"
    Appl. Phys. Lett., 120(13), 132101(1-6), 2022, DOI:10.1063/5.0080895
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    "Synthesis of colorless and high-refractive-index sulfoxide-containing polymers via the oxidation of poly(phenylene sulfide) derivatives"
    Polym. Chem., 13(12), 1705-1711, 2022, DOI:10.1039/D1PY01654G
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    "アルミニウムと鉄の合金を使って水素を貯える -中性子と放射光を利用した新しい水素化物探索研究"
    中性子産業利用推進協議会季報「四季」, 54, 13-18, 2022
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    "A comparative study on the stability of the furfural molecule on low index Ni Pd and Pt surfaces"
    R. Soc. Open Sci., 9, 211516(1-19), 2022, DOI: 10.1098/rsos.211516
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    "Designing ultrahigh-refractive-index amorphous poly(phenylene sulfide)s based on dense intermolecular hydrogen-bond networks"
    Macromolecules, 55(6), 2252-2259, 2022, DOI:10.1021/acs.macromol.1c02412
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    "触媒化学を基盤とする水素貯蔵法の研究開発"
    環境技術, 51(2), 79-83, 2022
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    "Protocol for synthesis and characterization of ePTFE reinforced, sulfonated polyphenylene in the application to proton exchange membrane fuel cells"
    STAR Protoc., 3, 101049(1-16), 2022, DOI: 10.1016/j.xpro.2021.101049
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    "水素ぜい化の評価・解析法1.応力付加試験による高強度鋼の水素ぜい化評価"
    材料, 71(3), 327-334, 2022, DOI:10.2472/jsms.71.327
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    "Comparative study of stress and strain partitioning behaviors in medium manganese and transformation-induced plasticity-aided bainitic ferrite steels"
    Scr. Mater., 210, 114463(1-5), 2022, DOI: 10.1016/j.scriptamat.2021.114463
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    "Uncovering the mechanism of the hydrogen poisoning on Ru nanoparticles via density functional theory calculations"
    Catalysts, 12(3), 331(1-12), 2022, DOI: 10.3390/catal12030331
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    "Electrical double layer on the Pt(111) electrode modeled under ultrahigh vacuum conditions"
    J. Phys. Chem. C, 126(9), 4726-4732, 2022, DOI: 10.1021/acs.jpcc.2c00259
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    "Niを担持した六方晶BaTiO(3-x)Nyを触媒としたアンモニア分解"
    触媒, 64(B), 63-65, 2022
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    "希土類水素化物担持Cu触媒上での低温メタノール合成の作動機構解明"
    触媒, 64(B), 42-44, 2022
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    "Theoretical study of the isotope and homologue effects on nuclear magnetic shielding in water and hydrogen sulfide molecules"
    Chem. Lett., 51(3), 342-344, 2022, DOI:10.1246/cl.210760
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    "Hydrophilic isopropanol/acetone-substituted polymers for safe hydrogen storage"
    Polym. Int., 71, 348-351, 2022, DOI: 10.1016/10.1002/pi.6337
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    "Highly conductive and alkaline stable partially fluorinated anion exchange membranes for alkaline fuel cells: Effect of ammonium head groups"
    J. Membr. Sci., 643, 120072(1-13), 2022, DOI: 10.1016/j.memsci.2021.120072
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    "Hydride-ion-conducting K2NiF4-type Ba-Li oxyhydride solid electrolyte"
    Nat. Mater., 21(3), 325-330, 2022, DOI: 10.1038/s41563-021-01175-0
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    "Austenite stabilization kinetics in early stages of austempering treatment in TRIP-aided steel using in-situ neutron diffraction technique"
    Materialia, 21, 101317(1-6), 2022, DOI:10.1016/j.mtla.2022.101317
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    "Effect of water management in membrane and cathode catalyst layers on suppressing the performance hysteresis phenomenon in anion-exchange membrane fuel cells"
    J. Power Sources, 522, 230997(1-11), 2022, DOI:10.1016/j.jpowsour.2022.230997
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    "Silicon nanocrystals embedded in nanolayered silicon oxide for crystalline silicon solar cells"
    ACS Appl. Nano Mater., 5(2), 1820-1827, 2022, DOI: 10.1021/acsanm.1c03355
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    "Inter-element miscibility driven stabilization of ordered pseudo-binary alloy"
    Nat. Commun., 13, 1047(1-7), 2022, DOI:10.1038/s41467-022-28710-0
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    "Fluoride-ion conversion alloy for fluoride-ion batteries"
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    "Selective catalytic reduction of NOx by methanol on metal-free zeolite with Brønsted and Lewis acid pair"
    ACS Catal., 12(4), 2403-2414, 2022, DOI:10.1021/acscatal.1c05624
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    "Interaction of water with nitrogen-doped graphene"
    Phys. Rev. B, 105(7), 075416(1-10), 2022, DOI: 10.1103/PhysRevB.105.075416
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    "希少な元素を使わずにアルミニウムと鉄で水素を蓄える"
    SPring-8/SACLA利用者情報, 27, 6-10, 2022
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    "Study on ionic conduction of alginate bio-based polymer electrolytes by incorporating ionic liquid"
    Mater. Today Proc., 51(2), 1455-1459, 2022, DOI:10.1016/j.matpr.2021.11.654
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    "Pressure-induced hydrogen localization coupled to a semiconductor-insulator transition in a hydrogen-bonded molecular conductor"
    RSC Adv., 9(32), 18353-18358, 2019, DOI:10.1039/c9ra02833a
  • M. Yoshida, R. Hirahata, T. Inoue, T. Shimbayashi, and *K. Fujita
    "Iridium-catalyzed transfer hydrogenation of ketones and aldehydes using glucose as a sustainable hydrogen donor"
    Catalysts, 9(6), 503(1-13), 2019, DOI:10.3390/catal9060503
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    "Changes of RHEED intensity with hydrogen position on metal surface"
    Surf. Sci., 688, 7-13, 2019, DOI:10.1016/j.susc.2019.05.005
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    "Effect of crosslinking on the properties of partially fluorinated anion exchange membranes"
    J. Polym. Sci., A: Polym. Chem., 57(10), 1059-1069, 2019, DOI:10.1002/pola.29360
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    "Construction of three-dimensional anionic molecular frameworks based on hydrogen-bonded metal dithiolene complexes and the crystal solvent effect"
    CrystEngComm, 21(18), 2940-2948, 2019, DOI:10.1039/c9ce00364a
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    ACS Catal., 9(5), 4539-4550, 2019, DOI:10.1021/acscatal.9b00041
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    "Ionic conduction in Li3Na(NH2)4: Study of the material design for the enhancement of ion conductivity in double-cation complex hydrides"
    AIP Adv., 9(5), 055109(1-5), 2019, DOI:10.1063/1.5093580
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    "Direct evidence of interfacial hydrogen bonding in proton-electron concerted 2D organic bilayer on Au substrate"
    e-J. Surf. Sci. Nanotechnol., 17, 49-55, 2019, DOI:10.1380/ejssnt.2019.49
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    "Hydrogen distribution and electronic structure of TiO2(110) hydrogenated with low-energy hydrogen ion"
    J. Phys. Chem. C, 123(16), 10319-10324, 2019, DOI:10.1021/acs.jpcc.8b09434
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    "H−D exchange mechanism of butene on a D‑absorbed Pd−Au alloy surface"
    J. Phys. Chem. C, 123(13), 7854-7860, 2019, DOI:10.1021/acs.jpcc.8b06964
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    Chem. Commun., 55(49), 7073-7076, 2019, DOI:10.1039/c9cc02475a
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    J. Electrochem. Soc., 166(7), F3105-F3110, 2019, DOI:10.1149/2.0131907jes
  • M. Sadakiyo, S. Hata, T. Fukushima, *G. Juhász, and *M. Yamauchi
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    Phys. Chem. Chem. Phys., 21(11), 5882-5889, 2019, DOI:10.1039/C8CP07445C
  • *A. Ueda, K. Kishimoto, Y. Sunairi, J. Yoshida, H. Yamakawa, T. Miyamoto, T. Terashige, H. Okamoto, and *H. Mori
    "Hysteretic current–voltage characteristics in the deuterium-dynamics-triggered charge-ordered phase of κ-D3(Cat-EDT-TTF)2"
    J. Phys. Soc. Jpn., 88(3), 034710(1-6), 2019, DOI:10.7566/JPSJ.88.034710
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    "Charge order and poor glass-forming ability of an anisotropic triangular-lattice system, θ-(BEDT-TTF)2TlCo(SCN)4, investigated by NMR"
    J. Phys. Soc. Jpn., 88(3), 034705(1-5), 2019, DOI:10.7566/JPSJ.88.034705
  • R. Akiyama, N. Yokota, and *K. Miyatake
    "Chemically stable, highly anion conductive polymers composed of quinquephenylene and pendant ammonium groups"
    Macromolecules, 52(5), 2131-2138, 2019, DOI:10.1021/acs.macromol.8b02199
  • *K.K. Ghuman, K. Tozaki, M. Sadakiyo, S. Kitano, T. Oyabe, and *M. Yamauchi
    "Tailoring widely used ammonia synthesis catalysts for H and N poisoning resistance"
    Phys. Chem. Chem. Phys., 21(9), 5117-5122, 2019, DOI:10.1039/C8CP05800H
  • *S. Kim, H. Oguchi, N. Toyama, T. Sato, S. Takagi, T. Otomo, D. Arunkumar, N. Kuwata, J. Kawamura, and *S. Orimo
    "A complex hydride lithium superionic conductor for high-energy-density all-solid-state lithium metal batteries"
    Nat. Commun., 10, 1081(1-9), 2019, DOI:10.1038/s41467-019-09061-9
  • Y. Kawahara-Nakagawa, K. Nishikawa, S. Nakashima, S. Inoue, T. Ohta, T. Ogura, Y. Shigeta, K. Fukutani, T. Yagi, and *Y. Higuchi
    "New assay method based on Raman spectroscopy for enzymes reacting with gaseous substrates"
    Protein Sci., 28(3), 663-670, 2019, DOI:10.1002/pro.3569
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    J. Phys.: Condens. Matter, 31(8), 085901(1-6), 2019, DOI:10.1088/1361-648X/aaf75c
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    "Understanding competition of polyalcohol dehydration reactions in hot water"
    J. Phys. Chem. B, 123(7), 1662-1671, 2019, DOI:10.1021/acs.jpcb.8b11615
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  • K. Asakawa, Y. Miura, N. Nagatsuka, K. Takeyasu, M. Matsumoto, and K. Fukutani
    "Electronic and spin structure of O- and H-adsorbed Fe3O4(111) surfaces"
    Phys. Rev. B, 99(8), 085442(1-8), 2019, DOI:10.1103/PhysRevB.99.085442
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    AIP Adv., 9(1), 015027(1-5), 2019, DOI:10.1063/1.5066367
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    "表面吸着水素の物理"
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    PNAS, 115(31), 7896-7900, 2018, DOI:10.1073/pnas.1800412115

著書

  • E. Akiyama, S. Ajito, and K. Fujita
    「Hydrogenomics: The science of fully utilizing hydrogen」 Ch.5.6 Hydrogen visualization techniques using metal complexes
    Kyoritsu Shuppan Co., Ltd., 268-280, 2023, ISBN 978-4320952201
  • T. Fukushima and M. Yamauchi
    「Hydrogenomics: The science of fully utilizing hydrogen」 Ch.5.5 High-efficiency synthesis of amino acids by electrochemical hydrogenation
    Kyoritsu Shuppan Co., Ltd., 260-268, 2023, ISBN 978-4320952201
  • H.-C. Chang and A. Nakada
    「Hydrogenomics: The science of fully utilizing hydrogen」 Ch.5.4 Generation of hydrogen radicals and chemical conversions using light
    Kyoritsu Shuppan Co., Ltd., 250-260, 2023, ISBN 978-4320952201
  • T. Shima
    「Hydrogenomics: The science of fully utilizing hydrogen」 Ch.5.3 Activation and conversion of small molecules using hydride clusters
    Kyoritsu Shuppan Co., Ltd., 240-250, 2023, ISBN 978-4320952201
  • M. Kitano
    「Hydrogenomics: The science of fully utilizing hydrogen」 Ch.5.2 Low-temperature ammonia synthesis reaction using hydrides
    Kyoritsu Shuppan Co., Ltd., 229-240, 2023, ISBN 978-4320952201
  • I. Hamada and J. Yoshinobu
    「Hydrogenomics: The science of fully utilizing hydrogen」 Ch.5.1 Hydrogen reaction process on catalyst: Experiment
    Kyoritsu Shuppan Co., Ltd., 217-229, 2023, ISBN 978-4320952201
  • H. Masai
    「Hydrogenomics: The science of fully utilizing hydrogen」 Ch.4.5 Color-tunable luminescent materials using protons
    Kyoritsu Shuppan Co., Ltd., 205-213, 2023, ISBN 978-4320952201
  • M. Yamauchi
    「Hydrogenomics: The science of fully utilizing hydrogen」 Ch.4.4 Proton-coupled electron transfer thermochemical cells
    Kyoritsu Shuppan Co., Ltd., 195-205, 2023, ISBN 978-4320952201
  • K. Miyatake and K. Oyaizu  
    「Hydrogenomics: The science of fully utilizing hydrogen」 Ch.4.3 Rechargeable fuel cells
    Kyoritsu Shuppan Co., Ltd., 185-195, 2023, ISBN 978-4320952201
  • K. Goto and N. Usami
    「Hydrogenomics: The science of fully utilizing hydrogen」 Ch.4.2 Hydrogen-doped solar cells
    Kyoritsu Shuppan Co., Ltd., 176-185, 2023, ISBN 978-4320952201
  • S. Kim, K. Kisu, and S. Orimo
    「Hydrogenomics: The science of fully utilizing hydrogen」 Ch.4.1 All-solid-state complex hydride batteries
    Kyoritsu Shuppan Co., Ltd., 169-176, 2023, ISBN 978-4320952201
  • Y. Hori, K. Nishikawa, Y. Shigeta, and Y. Higuchi
    「Hydrogenomics: The science of fully utilizing hydrogen」 Ch.3.7 Biological enzymes and hydrogenases
    Kyoritsu Shuppan Co., Ltd., 152-163, 2023, ISBN 978-4320952201
  • R. Arita and K. Shimizu
    「Hydrogenomics: The science of fully utilizing hydrogen」 Ch.3.6 Hydride high-temperature superconductivity
    Kyoritsu Shuppan Co., Ltd., 142-152, 2023, ISBN 978-4320952201
  • H.S. Kato and H. Mori
    「Hydrogenomics: The science of fully utilizing hydrogen」 Ch.3.5 Proton-electron correlated molecular crystals and bilayers
    Kyoritsu Shuppan Co., Ltd., 131-141, 2023, ISBN 978-4320952201
  • T. Kondo
    「Hydrogenomics: The science of fully utilizing hydrogen」 Ch.3.4 Hydrogen boride sheet materials
    Kyoritsu Shuppan Co., Ltd., 121-130, 2023, ISBN 978-4320952201
  • G. Kobayashi, S. Iimura, and H. Hosono
    「Hydrogenomics: The science of fully utilizing hydrogen」 Ch.3.3 Fast hydride ionic conductors in the mid-temperature range
    Kyoritsu Shuppan Co., Ltd., 107-121, 2023, ISBN 978-4320952201
  • H. Saitoh and S. Takagi
    「Hydrogenomics: The science of fully utilizing hydrogen」 Ch.3.1 Metal hydrides from high-pressure synthesis
    Kyoritsu Shuppan Co., Ltd., 87-98, 2023, ISBN 978-4320952201
  • M. Shiga and O. Sugino
    「Hydrogenomics: The science of fully utilizing hydrogen」 Ch.2.2.3 Quantum effects of hydrogen
    Kyoritsu Shuppan Co., Ltd., 72-82, 2023, ISBN 978-4320952201
  • S. Tsuneyuki
    「Hydrogenomics: The science of fully utilizing hydrogen」 Ch.2.2.2 Hydrogen data assimilation
    Kyoritsu Shuppan Co., Ltd., 62-72, 2023, ISBN 978-4320952201
  • S. Tsuneyuki
    「Hydrogenomics: The science of fully utilizing hydrogen」 Ch.2.2.1 Overview of computational technology
    Kyoritsu Shuppan Co., Ltd., 60-62, 2023, ISBN978-4320952201
  • M. Saito, N. Shibata, and Y. Ikuhara
    「Hydrogenomics: The science of fully utilizing hydrogen」 Ch.2.1.5 Direct observation of hydrogen by transmission electron microscopy
    Kyoritsu Shuppan Co., Ltd., 50-60, 2023, ISBN 978-4320952201
  • T.U. Ito and K. Shimomura
    「Hydrogenomics: The science of fully utilizing hydrogen」 Ch.2.1.4 Muon spin rotation, relaxation, and resonance methods
    Kyoritsu Shuppan Co., Ltd., 43-49, 2023, ISBN 978-4320952201
  • A. Machida and T. Otomo
    「Hydrogenomics: The science of fully utilizing hydrogen」 Ch.2.1.3 X-ray/neutron scattering
    Kyoritsu Shuppan Co., Ltd., 35-43, 2023, ISBN 978-4320952201
  • K. Fukutani
    「Hydrogenomics: The science of fully utilizing hydrogen」 Ch.2.1.2 Nuclear reaction analysis (NRA)
    Kyoritsu Shuppan Co., Ltd., 30-35, 2023, ISBN 978-4320952201
  • K. Fukutani
    「Hydrogenomics: The science of fully utilizing hydrogen」 Ch.2.1.1 Various hydrogen measurement methods
    Kyoritsu Shuppan Co., Ltd., 27-30, 2023, ISBN 978-4320952201
  • M. Yamauchi
    「Hydrogenomics: The science of fully utilizing hydrogen」 Ch.1.4 High activation ability of hydrogen
    Kyoritsu Shuppan Co., Ltd., 18-22, 2023, ISBN 978-4320952201
  • K. Miyatake
    「Hydrogenomics: The science of fully utilizing hydrogen」 Ch.1.3 Fast migration ability of hydrogen
    Kyoritsu Shuppan Co., Ltd., 11-18, 2023, ISBN 978-4320952201
  • T. Hitosugi
    「Hydrogenomics: The science of fully utilizing hydrogen」 Ch.1.2 Interfacial localizability of hydrogen
    Kyoritsu Shuppan Co., Ltd., 6-11, 2023, ISBN 978-4320952201
  • S. Orimo
    「Hydrogenomics: The science of fully utilizing hydrogen」 Ch.1.1 High densification ability of hydrogen
    Kyoritsu Shuppan Co., Ltd., 1-6, 2023, ISBN 978-4320952201
  • S. Orimo, K. Fukutani, and K. Fujita
    「Hydrogenomics: The science of fully utilizing hydrogen」
    Kyoritsu Shuppan Co., Ltd., 1-304, 2023, ISBN 978-4320952201
  • 齋藤寛之
    「脱炭素と環境浄化に向けた 吸着剤・吸着技術の開発動向」 第1編 第9章 レアメタルを使わない水素吸蔵合金の探索研究
    シーエムシー出版, 70, 2023, ISBN 978-4-7813-1725-0
  • C. Nishimura
    「CO2 free ammonia as an energy carrier :Japan's insights」Part V Ch.4 Development of vanadium alloy membrane for hydrogen purification
    Springer Singapore, 401-410, 2022, DOI:10.1007/978-981-19-4767-4
  • 齋藤寛之
    「高圧力の科学・技術辞典」 第4章1.6 金属水素化物
    朝倉書店, 268, 2022, ISBN 978-4-254-10297-0C3540
  • 入舩徹男, 舟越賢一, 近藤忠, 関根利守, 清水克哉, 長谷川正, 保科貴亮, 木村佳文, 加藤稔, 松木均
    「高圧力の科学・技術辞典」
    朝倉書店, 1-480, 2022, ISBN 978-4-254-10297-0C3540
  • *M. Kitano and H. Hosono
    「Crystalline metal oxide catalysts」Ch.7 Crystalline support
    Springer Singapore, 197-218, 2022, DOI:10.1007/978-981-19-5013-1
  • 藤田健一
    「水素の製造とその輸送,貯蔵,利用技術」第3章6節 イリジウム錯体触媒を用いた脱水素化反応に基づく水素製造ならびに水素貯蔵システム
    技術情報協会, 2022, ISBN 978-4-86104-899-9
  • 藤田健一
    「水素の製造とその輸送,貯蔵,利用技術」第3章12節 イリジウム錯体触媒を用いた脱水素化反応に基づく水素製造ならびに水素貯蔵システム
    技術情報協会, 2022, ISBN 978-4-86104-899-9
  • 有田亮太郎
    「多体電子構造論 ー 強相関物質の理論設計に向けて ー」
    内田老鶴圃, 1-208, 2022, ISBN 978-4-7536-2320-4
  • *W.M.C. Sameera, Y. Takeda, and Y. Ohki
    "Chapter Two - Transition metal catalyzed cross-coupling and nitrogen reduction reactions: Lessons from computational studies"
    Adv. Organomet. Chem., 78, 35-78, 2022, DOI:10.1016/bs.adomc.2022.03.002
  • 秋山英二, 味戸沙耶, 藤田健一
    「 “水素”を使いこなすためのサイエンス ハイドロジェノミクス」 5.6. 金属錯体を活用した水素可視化技術
    共立出版, 186-195, 2022, ISBN 978-4-320-04498-2
  • 張浩徹, 中田明伸
    「 “水素”を使いこなすためのサイエンス ハイドロジェノミクス」 5.4. 光を活用した水素ラジカル生成と物質変換反応
    共立出版, 171-179, 2022, ISBN 978-4-320-04498-2
  • 北野政明, 細野秀雄
    「 “水素”を使いこなすためのサイエンス ハイドロジェノミクス」 5.2. 水素化物を活用した低温アンモニア合成反応
    共立出版, 153-162, 2022, ISBN 978-4-320-04498-2
  • 濱田幾太郎, 𠮷信淳
    「 “水素”を使いこなすためのサイエンス ハイドロジェノミクス」 5.1 モデル触媒における水素反応プロセス:実験と理論
    共立出版, 143-153, 2022, ISBN 978-4-320-04498-2
  • 宮武健治, 小柳津研一
    「 “水素”を使いこなすためのサイエンス ハイドロジェノミクス」 4.3. リチャージャブル燃料電池
    共立出版, 122-131, 2022, ISBN 978-4-320-04498-2
  • 後藤和泰, 宇佐美徳隆
    「 “水素”を使いこなすためのサイエンス ハイドロジェノミクス」 4.2. 水素ドープ太陽電池
    共立出版, 115-122, 2022, ISBN 978-4-320-04498-2
  • 森初果, 加藤浩之
    「 “水素”を使いこなすためのサイエンス ハイドロジェノミクス」 3.5. プロトン-電子相関分子性結晶および二分子膜
    共立出版, 87-96, 2022, ISBN 978-4-320-04498-2
  • 近藤剛弘
    「 “水素”を使いこなすためのサイエンス ハイドロジェノミクス」 3.4. ホウ化水素シ―ト材料
    共立出版, 78-87, 2022, ISBN 978-4-320-04498-2
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特許

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