2020 |
Higashi, S., Tachikawa, T., Oh-ishi, K., Shigetoh, K., Takechi, K. and Beniya, A., “Freestanding
Interconnected Nanocluster Textiles for Efficient Oxygen Evolution Reaction”, Journal of Materials
Chemistry A (2020). 
|
Sakamoto, N., Nishimura, Y. F., Nonaka, T., Ohashi, M., Ishida, N., Kitazumi, K., Kato, Y., Sekizawa, K.,
Morikawa, T. and Arai, T., “Self-assembled Cuprous Coordination Polymer as a Catalyst for CO2
Electrochemical Reduction into C2 Products”, ACS Catalysis, Vol. 10, No. 18 (2020),
10412-10419.
|
Kamada, K., Jung, J., Wakabayashi, T., Sekizawa, K., Sato, S., Morikawa, T., Fukuzumi, S. and Saito, S.,
“Photocatalytic CO2 Reduction Using a Robust Multifunctional Iridium Complex toward the
Selective Formation of Formic Acid”, Journal of the American Chemical Society, Vol. 142, No. 23
(2020), 10261-10266.
|
Beniya, A., Higashi, S., Ohba, N., Jinnouchi, R., Hirata, H. and Watanabe, Y., “CO Oxidation Activity of
Non-reducible Oxide-supported Mass-selected Few-atom Pt Single-clusters”, Nature Communications,
Vol. 11 (2020), Article No. 1888. |
Ohta, S., Kawakami, M., Nozaki, H., Yada, C., Saito, T. and Iba, H., “Li+ Conducting
Garnet-type Oxide Sintering Triggered by an H+/Li+ Ion-exchange Reaction”, Journal
of Materials Chemistry A, Vol. 8 (2020), 8989-8996. |
Mikita, R., Ogihara, N., Takahashi, N., Kosaka, S. and Isomura, N., “Phase Transition Mechanism for
Crystalline Aromatic Dicarboxylate in Li+ Intercalation”, Chemistry of Materials, Vol.
32, No. 8 (2020), 3396-3404. |
Nakano, H., Ito, K., Miura, A. and Majima, Y., “Solution-processed Silicane Field-effect Transistor:
Operation Due to Stacking Defects on the Channel”, Advanced Functional Materials, Vol. 30, No. 15
(2020), 1908746. |
Lee, J., Ohba, N. and Asahi, R., “Design Rules for High Oxygen-ion Conductivity in Garnet-type Oxides”,
Chemistry of Materials, Vol. 32, No. 4 (2020), 1358-1370.
|
2019 |
Hayashi, Y., Setoyama, D., Hirose, Y., Yoshida, T. and Kimura, H., “Intragranular Three-dimensional
Stress Tensor Fields in Plastically Deformed Polycrystals”, Science, Vol. 366, No. 6472 (2019),
pp. 1492-1496. 
|
Kondo, R., Kawano, K., Koide, S. and Kutsuna, T., “Flow-based Image-to-image Translation with
Feature Disentanglement”, Advances in Neural Information Processing Systems 32, Electronic
Proceedings of the Neural Information Processing Systems Conference (2019).
|
Beniya, A. and Higashi, S., “Towards Dense Single-atom Catalysts for Future Automotive Applications”,
Nature Catalysis, Vol. 2 (2019), pp. 590-602.
|
Ohashi, M., Shirai, S. and Nakano, H., “Direct Chemical Synthesis of Benzyl-modified Silicane from Calcium
Disilicide”, Chemistry of Materials, Vol. 31, No. 13 (2019), pp. 4720-4725. |
Himiyama, T., Waki, M., Maegawa, Y. and Inagaki, S., “Cooperative Catalysis of an Alcohol Dehydrogenase
and Rhodium-modified Periodic Mesoporous Organosilica”, Angewandte Chemie, International Edition,
Vol. 58, No. 27 (2019), pp. 9150-9154. |
Hase, Y., Komori, Y., Kusumoto, T., Harada, T., Seki, J., Shiga, T., Kamiya, K. and Nakanishi, S.,
“Negative Differential Resistance as a Critical Indicator for the Discharge Capacity of Lithium-oxygen
Batteries”, Nature Communications, Vol. 10 (2019), Article No. 596. |
2018 |
Koide, S., Kawano, K. and Kutsuna, T., “Neural Edit Operations for Biological Sequences”, Advances in
Neural Information Processing Systems 31, Electronic Proceedings of the Neural Information
Processing Systems Conference (2018).
|
Mizoshita, N. and Inagaki, S., “Template-free Synthesis of Electroconductive Triphenylamine-silica
Nanotubes Exhibiting a Mixed-valence State”, Advanced Functional Materials, Vol. 28, No. 40
(2018), 1803116.
|
Muramoto, N., Oda, A., Tanaka, H., Nakamura, T., Kugou, K., Suda, K., Kobayashi, A., Yoneda, S., Ikeuchi,
A., Sugimoto, H., Kondo, S., Ohto, C., Shibata, T., Mitsukawa N. and Ohta, K., “Phenotypic Diversification
by Enhanced Genome Restructuring after Induction of Multiple DNA Double-strand Breaks”, Nature
Communications, Vol. 9 (2018), Article No. 1995. 
|
Sato, S., Saita, K., Sekizawa, K., Maeda, S. and Morikawa, T., “Low-energy Electrocatalytic
CO2 Reduction in Water over Mn-complex Catalyst Electrode Aided by a Nanocarbon Support and
K+ Cations”, ACS Catalysis, Vol. 8, No. 5 (2018), pp. 4452-4458.
|
Sekizawa, K., Sato, S., Arai, T. and Morikawa, T., “Solar-driven Photocatalytic CO2 Reduction
in Water Utilizing a Ruthenium Complex Catalyst on p-Type Fe2O3 with a
Multiheterojunction”, ACS Catalysis, Vol. 8, No. 2 (2018), pp. 1405-1416.
|
Kodama, K., Motobayashi, K., Shinohara, A., Hasegawa, N., Kudo, K., Jinnouchi, R., Osawa, M. and
Morimoto, Y., “Effect of the Side-chain Structure of Perfluoro-sulfonic Acid Ionomers on the Oxygen
Reduction Reaction on the Surface of Pt”, ACS Catalysis, Vol. 8, No. 1 (2018), pp. 694-700.
|
2017 |
Ito, K., Nishikawa, K., Miura, A., Toshiyoshi, H. and Iizuka, H., “Dynamic Modulation of Radiative Heat
Transfer beyond the Blackbody Limit”,
Nano Letters, Vol. 17, No. 7 (2017), pp. 4347-4353.
|
Hatanaka, T., Matsugami, A., Nonaka, T., Takagi, H., Hayashi, F., Tani, T. and Ishida, N., “Rationally
Designed Mineralization for Selective Recovery of the Rare Earth Elements”, Nature
Communications, Vol. 8 (2017), Article No. 15670. 
|
2016 |
Nakano, H. and Ikuno, T., “Soft Chemical Synthesis of Silicon Nanosheets and Their Applications”,
Applied Physics Reviews, Vol. 3 (2016), 040803.
|
Takeda, H., Ohashi, M., Goto, Y., Ohsuna, T., Tani, T. and Inagaki, S., “A Versatile Solid
Photosensitizer: Periodic Mesoporous Organosilicas with Ruthenium Tris(bipyridine) Complexes Embedded in
the Pore Walls”, Advanced Functional Materials, Vol. 26, No. 28 (2016), pp. 5068-5077.
|
Liu, X., Maegawa, Y., Goto, Y., Hara, K. and Inagaki, S., “Heterogeneous Catalysis for Water Oxidation by
an Iridium Complex Immobilized on Bipyridine-periodic Mesoporous Organosilica”, Angewandte Chemie,
International Edition, Vol. 55, No. 28 (2016), pp. 7943-7947.
|
Kodama, K., Jinnouchi, R., Takahashi, N., Murata, H. and Morimoto, Y., “Activities and Stabilities of
Au-modified Stepped-Pt Single-crystal Electrodes as Model Cathode Catalysts in Polymer Electrolyte Fuel
Cells”, Journal of the American Chemical Society, Vol. 138, No. 12 (2016), pp. 4194-4200.
|
Higashi, S., Lee, S. W., Lee, J. S., Takechi, K. and Cui, Y., “Avoiding Short Circuits from Zinc Metal
Dendrites in Anode by Backside-plating Configuration”, Nature Communications, Vol. 7 (2016),
Article No. 11801.
|
Tetsuka, H., Nagoya, A., Fukusumi, T. and Matsui, T., “Molecularly Designed, Nitrogen-functionalized
Graphene Quantum Dots for Optoelectronic Devices”, Advanced Materials, Vol. 28, No. 23 (2016),
pp. 4632-4638.
|
Yaokawa, R., Ohsuna, T., Morishita, T., Hayasaka, Y., Spencer, M. J. S. and Nakano, H.,
“Monolayer-to-bilayer Transformation of Silicenes and Their Structural Analysis”, Nature
Communications, Vol. 7 (2016), Article No. 10657.
|
2015 |
Arai, T., Sato, S. and Morikawa, T., “A Monolithic Device for CO2 Photoreduction to Generate
Liquid Organic Substances in a Single-compartment Reactor”, Energy & Environmental Science, Vol.
8 (2015), pp. 1998-2002. 
|
Takechi, K., Kato, Y. and Hase, Y., “A Highly Concentrated Catholyte Based on a Solvate Ionic Liquid for
Rechargeable Flow Batteries”, Advanced Materials, Vol. 27, No.15 (2015), pp. 2501-2506.
|
Mizoshita, N. and Inagaki, S., “Periodic Mesoporous Organosilica with Molecular-scale Ordering
Self-assembled by Hydrogen Bonds”, Angewandte Chemie, International Edition, Vol. 54, No.41
(2015), pp. 11999-12003.
|
Sato, S. and Ishitani, O., “Photochemical Reactions of Fac-rhenium(I) Tricarbonyl Complexes and Their
Application for Synthesis”, Coordination Chemistry Reviews, Vol. 282-283 (2015), pp. 50-59.
|
2014 |
Asahi, R., Morikawa, T., Irie, H. and Ohwaki, T., “Nitrogen-doped Titanium Dioxide as
Visible-light-sensitive Photocatalyst: Designs, Developments, and Prospects”, Chemical Reviews,
Vol. 114, No. 19 (2014), pp. 9824-9852.
|
Ogihara, N., Yasuda, T., Kishida, Y., Ohsuna, T., Miyamoto, K. and Ohba, N., “Organic Dicarboxylate
Negative Electrode Materials with Remarkably Small Strain for High-voltage Bipolar Batteries”,
Angewandte Chemie, International Edition, Vol. 53, No. 43 (2014), pp. 11467-11472.
|