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Masato Machida

Masato Machida

D-Index & Metrics

Chemistry

D-Index
55
Citations
10670
World Ranking
12147
National Ranking
910

Overview

Masato Machida is affiliated with Kumamoto University in Japan and has made contributions primarily in the fields of Materials Science and Chemical Engineering. Their research focuses extensively on Materials Chemistry and Catalysis, with significant work also relevant to Organic Chemistry, Renewable Energy, Sustainability, and Mechanical Engineering.

The scientist has published papers in various respected venues, notably:

  • ACS Catalysis
  • Catalysis Science & Technology
  • The Journal of Physical Chemistry C
  • Catalysis Today
  • Journal of the Ceramic Society of Japan

Masato Machida's most cited recent papers include:

  • "Nanometric Platinum Overlayer to Catalyze NH3 Oxidation with High Turnover Frequency" (2020, ACS Catalysis)
  • "Relationships among the Catalytic Performance, Redox Activity, and Structure of Cu-CHA Catalysts for the Direct Oxidation of Methane to Methanol Investigated Using In Situ XAFS and UV-Vis Spectroscopies" (2022, ACS Catalysis)
  • "Selective Oxidation of Methane to Formaldehyde over a Silica-Supported Cobalt Single-Atom Catalyst" (2022, The Journal of Physical Chemistry C)
  • "Multicomponent 3d Transition-Metal Nanoparticles as Catalysts Free of Pd, Pt, or Rh for Automotive Three-Way Catalytic Converters" (2020, ACS Applied Nano Materials)
  • "Thermal Deactivation of Pd/CeO2-ZrO2 Three-Way Catalysts during Real Engine Aging: Analysis by a Surface plus Peripheral Site Model" (2020, ACS Omega)

The primary topics addressed in their work emphasize catalytic processes and materials for catalysis, including:

  • Catalytic Processes in Materials Science
  • Catalysis and Oxidation Reactions
  • Nanomaterials for catalytic reactions
  • Electrocatalysts for Energy Conversion
  • Catalysis and Hydrodesulfurization Studies
  • Ammonia Synthesis and Nitrogen Reduction
  • Catalysts for Methane Reforming

Machida has collaborated frequently with several other researchers in related fields, including:

  • Junya Ohyama
  • Hiroshi Yoshida
  • Masayuki Tsushida
  • Keisuke Awaya
  • Shun Nishimura

Best Publications

  • Effect of additives on the surface area of oxide supports for catalytic combustion

    Masato Machida;Koichi Eguchi;Hiromichi Arai

  • MnOx-CeO2 binary oxides for catalytic NOx sorption at low temperatures. Sorptive removal of NOx

    Masato Machida;Masatoshi Uto;Daisuke Kurogi;Tsuyoshi Kijima

  • Thermal stabilization of catalyst supports and their application to high-temperature catalytic combustion

    Hiromichi Arai;Masato Machida

  • On the Reasons for High Activity of CeO2 Catalyst for Soot Oxidation

    Masato Machida;Yuichiro Murata;Kouji Kishikawa;Dongjie Zhang

  • Synthesis and photocatalytic property of layered perovskite tantalates, RbLnTa2O7 (Ln = La, Pr, Nd, and Sm)

    Masato Machida;Junichi Yabunaka;Tsuyoshi Kijima

  • Catalytic properties of BaMAl11O19-α (M = Cr, Mn, Fe, Co, and Ni) for high-temperature catalytic combustion

    Masato Machida;Koichi Eguchi;Hiromichi Arai

  • Effect of structural modification on the catalytic property of Mn-substituted hexaaluminates

    Masato Machida;Koichi Eguchi;Hiromichi Arai

  • Metallic Pd Nanoparticles Formed by Pd−O−Ce Interaction: A Reason for Sintering-Induced Activation for CO Oxidation

    Satoshi Hinokuma;Hiroaki Fujii;Madoka Okamoto;Keita Ikeue

  • Recent progress in high-temperature catalytic combustion

    H. Arai;M. Machida

  • Low temperature catalytic NOx–H2 reactions over Pt/TiO2-ZrO2 in an excess oxygen

    M Machida;S Ikeda;D Kurogi;T Kijima

  • Novel Visible-Light-Driven Photocatalyst Based on Mn−Cd−S for Efficient H2 Evolution†

    Keita Ikeue;Satoshi Shiiba;Masato Machida

  • Synthesis and deorganization of an aluminium–based dodecyl sulfate mesophase with a hexagonal structure

    Mitsunori Yada;Masato Machida;Tsuyoshi Kijima

  • Photocatalytic Property and Electronic Structure of Lanthanide Tantalates, LnTaO4 (Ln = La, Ce, Pr, Nd, and Sm)

    Masato Machida;Shunsuke Murakami;Tsuyoshi Kijima;Shigenori Matsushima

  • Synthesis of Aluminum-Based Surfactant Mesophases Morphologically Controlled through a Layer to Hexagonal Transition

    Mitsunori Yada;Hiroaki Hiyoshi;Kaoru Ohe;Masato Machida

  • Large-Capacity Oxygen Storage by Lanthanide Oxysulfate/Oxysulfide Systems

    Masato Machida;Kiyotaka Kawamura;Kazuhiro Ito;Keita Ikeue

  • Preparation and Characterization of Large Surface Area BaO·6Al2O3

    Masato Machida;Koichi Eguchi;Hiromichi Arai

  • Photocatalytic properties of layered perovskite tantalates, MLnTa2O7(M = Cs, Rb, Na, and H; Ln = La, Pr, Nd, and Sm)

    Masato Machida;Kaori Miyazaki;Shigenori Matsushima;Masao Arai

  • Analytical Electron Microscope Analysis of the Formation of BaO · 6Al2O3

    Masato Machida;Koichi Eguchi;Hiromichi Arai

  • Photocatalytic property and electronic structure of triple-layered perovskite tantalates, MCa2Ta3O10 (M = Cs, Na, H, and C6H13NH3).

    Masato Machida;Tomohiro Mitsuyama;Keita Ikeue;Shigenori Matsushima

  • Layered Pr-dodecyl sulfate mesophases as precursors of Pr2O2SO4 having a large oxygen-storage capacity

    Masato Machida;Kiyotaka Kawamura;Tomoatsu Kawano;Donjie Zhang

  • Mesoporous Magnetic Materials Based on Rare Earth Oxides.

    Mitsunori Yada;Hirohumi Kitamura;Akira Ichinose;Masato Machida

Frequent Co-Authors

Hiromichi Arai
Hiromichi Arai Kyushu University
Koichi Eguchi
Koichi Eguchi Kyoto University
Atsushi Satsuma
Atsushi Satsuma Kyoto University
Tetsuya Taketsugu
Tetsuya Taketsugu Hokkaido University
Masaaki Haneda
Masaaki Haneda Nagoya Institute of Technology
Toshinori Tsuru
Toshinori Tsuru Hiroshima University
Tsunehiro Tanaka
Tsunehiro Tanaka Kyoto University
Mauro Boero
Mauro Boero University of Strasbourg
Masakoto Kanezashi
Masakoto Kanezashi Hiroshima University
Yasumichi Matsumoto
Yasumichi Matsumoto Kumamoto University

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