論文リスト (徳永)

  • ISI Science citation index で論文としてカウントされるもの(≒査読誌)には番号をつけた、それ以外は参考とした
    論文被引用回数10065回 h指標 44(2023年8月、google scholar)

  • (114) Pt/CeO2 with residual chloride as reusable soft Lewis acid catalysts: application to highly efficient isomerization of allylic esters

    Huang, Q.-A.; Haruta, A.; Kumamoto, Y.; Murayama, H.; Yamamoto, E.; Honma, T.; Okumura, M.; Nobutou, H.; Tokunaga M.
    Appl. Catal. B Environ., 2021, 296, 120333. DOI: 10.1016/j.apcatb.2021.120333

  • (113) Continuous-flow synthesis of Pd@Pt core-shell nanoparticles

    Hashiguchi, Y.; Watanabe, F.; Honma, T.; Nakamura, I.; Poly, S. S.; Kawaguchi, T.; Tsuji, T.; Murayama, H.; Tokunaga, M.; Fujitani, T.
    Colloid Surf. A-Physicochem. Eng. Asp., 2021, 620, 126607. DOI: 10.1016/j.colsurfa.2021.126607

  • (参考37)EYELA REPORT ぶらり研究室めぐり

    九州大学大学院理学研究院 化学部門 触媒有機化学研究室
    EYELA めいと 2021, 120, 6.

  • (112) C-H bond functionalization using Pd and Au supported catalysts with mechanistic insights of the active species

    Ishida, T.; Zhang, Z.; Murayama, H.; Yamamoto, E.; Tokunaga, M.
    Synthesis, 2021, 53, 3279–3289. DOI: 10.1055/a-1468-1455
    Special Issue - Bond Activation in Honor of Prof. Shinji Murai

  • (参考36) 発酵産業を豊かなものにするナノ材料技術

    ~老香が除かれ吟醸香が香り立つ~
    リバネス「研究応援」2021年3月号p. 22

  • (参考35) 日本酒劣化臭の選択的除去への金ナノ粒子の応用とその背景

    村山美乃,磯谷敦子,徳永 信
    触媒 2021, 63 (1), 52-55.

  • (参考34) 担持金ナノ粒子吸着剤による酒類からの硫黄臭除去 

    (参考34) 担持金ナノ粒子吸着剤による酒類からの硫黄臭除去 
    村山美乃、徳永 信、磯谷敦子
    最新吸着技術便覧 プロセス・材料・設計 新訂三版 監修 竹内 雍、NTS出版274-278 (2020).

  • (参考33) 清酒の劣化臭吸着剤としてのシリカ担持金ナノ粒子の応用 

    (参考33) 清酒の劣化臭吸着剤としてのシリカ担持金ナノ粒子の応用 
    村山美乃、磯谷敦子、徳永 信
    放射光学会誌, 2020, 33, 222-230.

  • (111) Theoretical study of selective hydrogenolysis of methyl vinyl carbinol over Au-Ni bimetallic catalyst: toward constructing a working hypothesis for the role of dichloroethane solvent and perimeter sites

    (111) Theoretical study of selective hydrogenolysis of methyl vinyl carbinol over Au-Ni bimetallic catalyst: toward constructing a working hypothesis for the role of dichloroethane solvent and perimeter sites
    Ato, Y.; Hayashi, A.; Sonoura, A.; Koga, H.; Ishida, T.; Tokunaga, M.; Okumura, M.
    Chem. Phys. Lett., 2020, 754, 137773. DOI: doi.org/10.1016/j.cplett.2020.137773

  • (参考32) CCIサロン ケミストの趣味 「アニメ」

    (参考32) CCIサロン ケミストの趣味 「アニメ」 
    徳永 信
    化学と工業, 2020, 73, 266.(研究の話ではありません。。。が、多数コメント頂いています)

  • (110) DFT study for selective adsorption of 1,3-dimethyltrisulfane responsible for aged odor in Japanese sake using supported gold nanoparticles

    (110) DFT study for selective adsorption of 1,3-dimethyltrisulfane responsible for aged odor in Japanese sake using supported gold nanoparticles
    Sonoura, A.; Hayashi, A.; Ato, Y.; Koga, H.; Murayama, H.; Tokunaga, M.; Okumura, M.
    Chem. Lett., 2020, 49, 218-221.. DOI: 10.1246/cl.190868

  • (109) Selective mild oxidation of methane to methanol or formic acid on Fe-MOR catalysts

    (109) Selective mild oxidation of methane to methanol or formic acid on Fe-MOR catalysts
    Fang, Z.; Murayama, H.; Zhao, Q.; Liu, B.; Jiang, F.; Xu, Y.; Tokunaga, M.; Liu, X.
    Catal. Sci. Tech., 2019, 6946-6956. DOI : 10.1039/C9CY01640F

  • (108) Surface Modification of a Supported Pt Catalyst Using Ionic Liquids for Selective Hydrodeoxygenation of Phenols into Arenes under Mild Conditions

    (108) Surface Modification of a Supported Pt Catalyst Using Ionic Liquids for Selective Hydrodeoxygenation of Phenols into Arenes under Mild Conditions
    Ohta, H.; Tobayashi, K.; Kuroo, A.; Nakatsuka, M.; Kobayashi, H.; Fukuoka, A.; Hamasaka, G.; Uozumi, Y.; Murayama, H.; Tokunaga, M.; Uchida, T.; Hayashi, M.
    Chem. Eur. J., 2019, 25, 14762-14766. DOI : 10.1002/chem.201902668

  • (107) The additive effect of amines on the dihydroxylation of buta-1,3-diene into butenediols by supported Pd catalysts

    (107) The additive effect of amines on the dihydroxylation of buta-1,3-diene into butenediols by supported Pd catalysts
    Zhang, Z.; Mamba, T.; Huang, Q.-A.; Murayama, H.; Yamamoto, E.; Honma, T.; Tokunaga, M.
    Mol. Catal., 2019, 475, 110502. DOI: 10.1016/j.mcat.2019.110502
    Celebrating 60th Birthday of Professor Atsushi Fukuoka

  • (106) Enantioselective Protonation of Enol Esters with Bifunctional Phosphonium/Thiourea Catalysts

    (106) Enantioselective Protonation of Enol Esters with Bifunctional Phosphonium/Thiourea Catalysts
    Yamamoto, E.; Wakafuji, K.; Mori, Y.; Teshima, G.; Hidani, Y.; Tokunaga, M.
    Org. Lett., 2019, 21, 4030-4034. DOI: 10.1021/acs.orglett.9b01216

  • (105) Pd-Catalyzed Decarbonylation of Furfural: Elucidation of Support Effect on Pd Size and Catalytic Activity Using in-situ XAFS

    (105) Pd-Catalyzed Decarbonylation of Furfural: Elucidation of Support Effect on Pd Size and Catalytic Activity Using in-situ XAFS
    Ishida, T.; Honma, T.; Nakada, K.; Murayama, H.; Mamba, T.; Kume, K.; Izawa, Y.; Utsunomiya, M.; Tokunaga M.
    J. Catal., 2019, 374, 320-327. doi.org/10.1016/j.apcatb.2019.01.031.

  • (104) 担持金ナノ粒子を用いた老香成分DMTS除去技術の実用化に向けた検討

    (104) 担持金ナノ粒子を用いた老香成分DMTS除去技術の実用化に向けた検討
    磯谷敦子・村山美乃・木村萌水・篠﨑貴旭・山本英治・藤井力・飯塚幸子・徳永信
    日本醸造協会誌, 2019, 114, 779-786.

  • Study for practical application of supported gold nanoparticles for removal of DMTS responsible for hineka in sake

    Study for practical application of supported gold nanoparticles for removal of DMTS responsible for hineka in sake
    Isogai, A.; Murayama, H.; Kimura, M.; Shinozaki, T.; Yamamoto, E.; Fujii, T.; Iizuka, S.; Tokunaga, M.
    J. Brew. Soc. Japan., 2019, 114, 779-786 (in Japanese).

  • (103) Structures analyses of supported ruthenium catalysts under asymmetric hydrogenation reaction

    (103) Structures analyses of supported ruthenium catalysts under asymmetric hydrogenation reaction
    Murayama, H.; Ikutake, Y.; Nakashima, H.; Honma, T.; Tokunaga, M..
    Rad. Phys. Chem., 2020, 175, 108158.
    https://doi.org/10.1016/j.radphyschem.2019.02.017

  • (102) Direct transformation of terminal alkenes with H2O into primary alcohols over metal oxide-supported Pd catalysts.

    (102) Direct transformation of terminal alkenes with H2O into primary alcohols over metal oxide-supported Pd catalysts.
    Zhang, Z.; Mamba, T.; Yamamoto, E.; Murayama, H.; Ishida, T.; Honma, T.; Fujitani, T.; Tokunaga, M.
    Appl. Catal. B Environ, 2019, 246, 100-110. doi.org/10.1016/j.apcatb.2019.01.031.