World's Best Scientists 2026 revealed!
Norio Miura

Norio Miura

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Materials Science
Japan
2022

D-Index & Metrics

Materials Science

D-Index
88
Citations
27448
World Ranking
1872
National Ranking
75

Chemistry

D-Index
88
Citations
28132
World Ranking
2284
National Ranking
126

Research.com Recognitions

  • 2022 - Research.com Materials Science in Japan Leader Award

Overview

Norio Miura is affiliated with Kyushu University in Japan. Their research contributions include work on plant biology, specifically focusing on stress responses in crops. One notable publication by Miura is titled Drought tolerance of cowpea is associated with rapid abscisic acid biosynthesis via VuWRKY57 in root, published in 2025 in the journal AoB Plants.

Miura's collaborative network includes several frequent co-authors, indicating active collaboration in research projects. These co-authors are:

  • Misaki Tochihara-Tanaka
  • Kai Su
  • Nao Murakami
  • Shinya Murakami
  • Reika Komai

Their research has appeared primarily in the publication venue AoB Plants, which specializes in plant biology and related studies.

The scientist's work addresses drought tolerance mechanisms in cowpea, with an emphasis on rapid abscisic acid biosynthesis mediated by transcription factors, such as VuWRKY57 in root tissues. This area of study contributes to understanding how certain crops adapt to environmental stress conditions like drought.

Best Publications

  • Grain size effects on gas sensitivity of porous SnO2-based elements

    Chaonan Xu;Jun Tamaki;Norio Miura;Noboru Yamazoe

  • Polyaniline/single-wall carbon nanotube (PANI/SWCNT) composites for high performance supercapacitors

    Vinay Gupta;Norio Miura

  • Influence of constituent metal cations in substituted LaCoO3 on mixed conductivity and oxygen permeability

    Y. Teraoka;T. Nobunaga;K. Okamoto;N. Miura

  • Electronic Interaction between Metal Additives and Tin Dioxide in Tin Dioxide-Based Gas Sensors

    Shigenori Matsushima;Yasutake Teraoka;Norio Miura;Noboru Yamazoe

  • Tungsten Oxide-Based Semiconductor Sensor Highly Sensitive to NO and NO2

    Morito Akiyama;Jun Tamaki;Norio Miura;Noboru Yamazoe

  • Potentiostatically deposited nanostructured α-Co(OH)2: A high performance electrode material for redox-capacitors

    Vinay Gupta;Teruki Kusahara;Hiroshi Toyama;Shubhra Gupta

  • Environmental gas sensing

    Noboru Yamazoe;Norio Miura

  • High performance electrochemical supercapacitor from electrochemically synthesized nanostructured polyaniline

    Vinay Gupta;Norio Miura

  • Electrochemically synthesized MnO2-based mixed oxides for high performance redox supercapacitors

    Kalakodimi Rajendra Prasad;Norio Miura

  • Relationship between ethanol gas sensitivity and surface catalytic property of tin oxide sensors modified with acidic or basic oxides

    Teruyuki Jinkawa;Go Sakai;Jun Tamaki;Norio Miura

  • Potentiostatically deposited nanostructured CoxNi1−x layered double hydroxides as electrode materials for redox-supercapacitors

    Vinay Gupta;Shubhra Gupta;Norio Miura

  • CuO-SnO2 element for highly sensitive and selective detection of H2S

    Jun Tamaki;Tomoki Maekawa;Norio Miura;Noboru Yamazoe

  • Oxygen sorption and catalytic properties of La1−xSrxCo1−yFeyO3 Perovskite-type oxides

    H.M. Zhang;Y. Shimizu;Y. Teraoka;N. Miura

  • Grain‐Size Effects in Tungsten Oxide‐Based Sensor for Nitrogen Oxides

    J. Tamaki;Z. Zhang;K. Fujimori;M. Akiyama

  • Dilute hydrogen sulfide sensing properties of CuO–SnO2 thin film prepared by low-pressure evaporation method

    Jun Tamaki;Kengo Shimanoe;Yoshihiro Yamada;Yoshifumi Yamamoto

  • Gas sensing properties of tin oxide thin films fabricated from hydrothermally treated nanoparticles: Dependence of CO and H2 response on film thickness

    Go Sakai;Nam Seok Baik;Norio Miura;Noboru Yamazoe

  • Electrochemically Deposited Polyaniline Nanowire’s Network A High-Performance Electrode Material for Redox Supercapacitor

    Vinay Gupta;Norio Miura

  • Highly selective CO sensor using stabilized zirconia and a couple of oxide electrodes

    Norio Miura;Takahisa Raisen;Geyu Lu;Noboru Yamazoe

  • Study of WO3-based sensing materials for NH3 and NO detection

    Xusheng Wang;Norio Miura;Noboru Yamazoe

  • High-temperature hydrogen sensor based on stabilized zirconia and a metal oxide electrode

    Geyu Lu;Norio Miura;Noboru Yamazoe

  • Impedancemetric gas sensor based on zirconia solid electrolyte and oxide sensing electrode for detecting total NOx at high temperature

    Norio Miura;Mitsunobu Nakatou;Serge Zhuiykov

Frequent Co-Authors

Noboru Yamazoe
Noboru Yamazoe Kyushu University
Kengo Shimanoe
Kengo Shimanoe Kyushu University
Yasutake Teraoka
Yasutake Teraoka Kyushu University
Vinay Gupta
Vinay Gupta Khalifa University
Chao-Nan Xu
Chao-Nan Xu National Institute of Advanced Industrial Science and Technology
Morito Akiyama
Morito Akiyama National Institute of Advanced Industrial Science and Technology
Yukihiro Shoyama
Yukihiro Shoyama Nagasaki International University
Makoto Sasaki
Makoto Sasaki Tohoku University
Tetsuya Kida
Tetsuya Kida Kumamoto University
Jun-ichi Yamaki
Jun-ichi Yamaki Kyoto University

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