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D-Index & Metrics

Materials Science

D-Index
61
Citations
15766
World Ranking
6692
National Ranking
209

Overview

Yi Jia is a researcher affiliated with Griffith University in Australia, whose academic focus spans multiple interconnected fields within science and engineering. Their main areas of study include Engineering, Energy, and Materials Science, with significant work also conducted in subfields such as Electrical and Electronic Engineering, Renewable Energy, Sustainability and the Environment, Materials Chemistry, Molecular Biology, and Catalysis.

The research topics Yi Jia explores largely revolve around energy conversion and materials science, including electrocatalysts for energy conversion, advanced battery technologies, catalytic processes in materials science, fuel cells, photocatalysis, and ammonia synthesis and nitrogen reduction. These themes mark a strong emphasis on energy-related materials and catalytic solutions.

Yi Jia has published extensively, with notable recent papers such as:

  • Single Carbon Vacancy Traps Atomic Platinum for Hydrogen Evolution Catalysis, 2022, Journal of the American Chemical Society
  • Edge-Rich Fe−N4 Active Sites in Defective Carbon for Oxygen Reduction Catalysis, 2020, Advanced Materials
  • Recent advances in liquid-phase chemical hydrogen storage, 2020, Energy Storage Materials
  • Sulfur-Modified Oxygen Vacancies in Iron-Cobalt Oxide Nanosheets: Enabling Extremely High Activity of the Oxygen Evolution Reaction to Achieve the Industrial Water Splitting Benchmark, 2020, Angewandte Chemie International Edition
  • Understanding the Activity of Co-N4−xCx in Atomic Metal Catalysts for Oxygen Reduction Catalysis, 2020, Angewandte Chemie International Edition

Their contributions are spread across various publication venues, frequently appearing in:

  • SSRN Electronic Journal
  • Nature Communications
  • Chemical Engineering Journal
  • Chem
  • Advanced Materials

Yi Jia collaborates broadly, with multiple co-authors contributing to their body of work. Prominent frequent co-authors include:

  • Xiangdong Yao, with 23 joint publications
  • Xuecheng Yan, with 15 joint publications
  • Xin Wang, with 11 joint publications
  • Xin Mao, with 10 joint publications
  • Aijun Du, with 10 joint publications

Across their publications, Yi Jia has investigated topics such as electrocatalysts designed to improve energy conversion processes, developments in battery technology, and catalytic mechanisms in materials science, highlighting a multidisciplinary approach to current challenges in energy and materials research.

Best Publications

  • Ultrathin Iron-Cobalt Oxide Nanosheets with Abundant Oxygen Vacancies for the Oxygen Evolution Reaction.

    Linzhou Zhuang;Lei Ge;Yisu Yang;Mengran Li

  • Defect Graphene as a Trifunctional Catalyst for Electrochemical Reactions

    Yi Jia;Longzhou Zhang;Aijun Du;Guoping Gao

  • A Heterostructure Coupling of Exfoliated Ni–Fe Hydroxide Nanosheet and Defective Graphene as a Bifunctional Electrocatalyst for Overall Water Splitting

    Yi Jia;Longzhou Zhang;Guoping Gao;Hua Chen

  • Graphene Defects Trap Atomic Ni Species for Hydrogen and Oxygen Evolution Reactions

    Longzhou Zhang;Yi Jia;Guoping Gao;Xuecheng Yan

  • Identification of active sites for acidic oxygen reduction on carbon catalysts with and without nitrogen doping

    Yi Jia;Longzhou Zhang;Longzhou Zhang;Linzhou Zhuang;Hongli Liu

  • Coordination of Atomic Co-Pt Coupling Species at Carbon Defects as Active Sites for Oxygen Reduction Reaction.

    Longzhou Zhang;Julia Melisande Theresa Agatha Fischer;Yi Jia;Xuecheng Yan

  • Defects on carbons for electrocatalytic oxygen reduction.

    Xuecheng Yan;Yi Jia;Xiangdong Yao

  • Electronic Structure Tuning in Ni3FeN/r-GO Aerogel toward Bifunctional Electrocatalyst for Overall Water Splitting

    Yu Gu;Shuai Chen;Jun Ren;Yi Alec Jia

  • Single Carbon Vacancy Traps Atomic Platinum for Hydrogen Evolution Catalysis.

    Unknown

  • The Role of Defect Sites in Nanomaterials for Electrocatalytic Energy Conversion

    Yi Jia;Kun Jiang;Haotian Wang;Xiangdong Yao;Xiangdong Yao

  • A Defect-Driven Metal-free Electrocatalyst for Oxygen Reduction in Acidic Electrolyte

    Daohao Li;Yi Jia;Guojing Chang;Jun Chen

  • Three-dimensional NiCo2O4@NiWO4 core–shell nanowire arrays for high performance supercapacitors

    Sanming Chen;Guang Yang;Yi Jia;Huajun Zheng

  • Edge-Rich Fe-N4 Active Sites in Defective Carbon for Oxygen Reduction Catalysis.

    Xin Wang;Yi Jia;Xin Mao;Daobin Liu

  • A Surfactant‐Free and Scalable General Strategy for Synthesizing Ultrathin Two‐Dimensional Metal–Organic Framework Nanosheets for the Oxygen Evolution Reaction

    Linzhou Zhuang;Lei Ge;Hongli Liu;Zongrui Jiang

  • Sulfur‐Modified Oxygen Vacancies in Iron–Cobalt Oxide Nanosheets: Enabling Extremely High Activity of the Oxygen Evolution Reaction to Achieve the Industrial Water Splitting Benchmark

    Linzhou Zhuang;Yi Jia;Hongli Liu;Zhiheng Li

  • Recent advances in liquid-phase chemical hydrogen storage

    Chengguang Lang;Yi Jia;Xiangdong Yao

  • Ultra-dense carbon defects as highly active sites for oxygen reduction catalysis

    Unknown

  • Defect-Induced Pt-Co-Se Coordinated Sites with Highly Asymmetrical Electronic Distribution for Boosting Oxygen-Involving Electrocatalysis

    Linzhou Zhuang;Yi Jia;Hongli Liu;Xin Wang

  • Understanding the Activity of Co-N4−xCx in Atomic Metal Catalysts for Oxygen Reduction Catalysis

    Qin Yang;Qin Yang;Yi Jia;Fenfei Wei;Linzhou Zhuang

  • Combination of nanosizing and interfacial effect: Future perspective for designing Mg-based nanomaterials for hydrogen storage

    Yi Jia;Yi Jia;Chenghua Sun;Chenghua Sun;Shaohua Shen;Shaohua Shen;Jin Zou

  • A Directional Synthesis for Topological Defect in Carbon

    Xin Wang;Yi Jia;Xin Mao;Longzhou Zhang

  • Tuning oxygen vacancies in two-dimensional iron-cobalt oxide nanosheets through hydrogenation for enhanced oxygen evolution activity

    Linzhou Zhuang;Yi Jia;Tianwei He;Aijun Du

  • Defective-Activated-Carbon-Supported Mn-Co Nanoparticles as a Highly Efficient Electrocatalyst for Oxygen Reduction.

    Xuecheng Yan;Yi Jia;Jie Chen;Zhonghua Zhu

  • Seaweed biomass derived (Ni,Co)/CNT nanoaerogels: efficient bifunctional electrocatalysts for oxygen evolution and reduction reactions

    Na Ma;Yi Alec Jia;Xianfeng Yang;Xilin She

Frequent Co-Authors

Xiangdong Yao
Xiangdong Yao Sun Yat-sen University
Dongjiang Yang
Dongjiang Yang Qingdao University
Xin Wang
Xin Wang University of Science and Technology of China
Linzhou Zhuang
Linzhou Zhuang State Key Laboratory of Chemical Engineering
Jun Chen
Jun Chen Nankai University
Zhonghua Zhu
Zhonghua Zhu University of Queensland
Aijun Du
Aijun Du Queensland University of Technology
Jin Zou
Jin Zou University of Queensland
Hua Gui Yang
Hua Gui Yang East China University of Science and Technology
Chenghua Sun
Chenghua Sun Swinburne University of Technology

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