Research field (4):
Environmental materials/recycling technology
, Environmental load reduction/restoration technology
, Inorganic compounds/materials chemistry
, Inorganic materials
Research theme for competitive and other funds (16):
2022 - 2025 Development of novel porous materials for direct separation from crude oil
2016 - 2019 Preparation of highly functional porous material by geopolymers based on natural zeolite
2014 - 2017 TiO2-based underwater oleophobic surface for oil-water separation
2013 - 2015 Fast oxide-ion conductor-assisted novel catalytic function
2011 - 2013 Development of multi functions environment purification materials based on titania/clay composites
2010 - 2012 Clarification of Layer-Anion Interaction of Layered Double Hydroxide for Realizing Highly Selective Anion Exchange
2007 - 2008 Development of Surface Functional Materials based on the Flow Dynamics at Solid Liquid Interface
2000 - 2001 Preparation of Photocatalyst in Iron Oxide-Titania Solid Solution and Silica System through Two-Liquid Phase Separation
1999 - 2000 Preparation of Transition Metal Doped Titania-Silica photocatalyst through Two-Liquids Phase Separation
1997 - 1998 Preparation of Intelligent Water Vapor Control Material by Selective Leaching Method
1997 - 1997 噴霧熱分解粉体からの超耐熱性触媒担体の作製
1996 - 1996 分相現象を利用した異方性磁気・光学特性を発現する新ガラス材料の作製
1996 - 1996 噴霧熱分解法粉体からの超耐熱性触媒担体の作製
1995 - 1996 Preparation of New Molecular Sieve Material by Selective Leaching Method
1995 - 1995 非対称多孔質基板上に担持したチタニア薄膜光触媒による水の完全光分解
1995 - 1995 噴霧熱分解粉体からの超耐熱性触媒材料の作製
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Papers (206):
Yuta Miyamoto, Anna Nagai, Shunsuke Nishimoto, Michihiro Miyake, Yoshikazu Kameshima, Motohide Matsuda. Fabrication of high performance Pr4Ni3O10 cathode based upon magnetic orientation behavior for intermediate-temperature solid oxide fuel cell. Materials Letters. 2023. 349. 134731-134731
Ryouma Suzuki, Shunsuke Nishimoto, Michihiro Miyake, Yoshikazu Kameshima, Anna Nagai, Motohide Matsuda. Ni1-xCux/Ce0.9Gd0.1O1.95 cermet anodes for intermediate-temperature solid oxide fuel cells fueled with simulated biogas; their electrochemical performance and ability to inhibit carbon deposition. Journal of the Ceramic Society of Japan. 2023. 131. 7. 324-329