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Chemistry

D-Index
67
Citations
14964
World Ranking
6953
National Ranking
1237

Overview

Hongjing Wang is affiliated with Zhejiang University of Technology in China and conducts research primarily in the fields of Energy and Engineering. Their work focuses on renewable energy, sustainability, catalysis, materials chemistry, and electrical and electronic engineering, with a strong emphasis on advanced energy conversion technologies.

Their research covers several main topics, including:

  • Electrocatalysts for Energy Conversion
  • Advanced Photocatalysis Techniques
  • Advanced Battery Technologies Research
  • Ammonia Synthesis and Nitrogen Reduction
  • Fuel Cells and Related Materials
  • Caching and Content Delivery
  • Nanomaterials for Catalytic Reactions

Hongjing Wang has published extensively in several scientific journals, with frequent contributions to these venues:

  • Journal of Materials Chemistry A
  • Chemical Engineering Journal
  • Chemical Communications
  • Applied Catalysis B: Environmental
  • Small

Among their recent papers are:

  • "Defect-Rich Porous Palladium Metallene for Enhanced Alkaline Oxygen Reduction Electrocatalysis," 2021, Angewandte Chemie International Edition
  • "Concave-convex surface oxide layers over copper nanowires boost electrochemical nitrate-to-ammonia conversion," 2021, Chemical Engineering Journal
  • "Ultralow-content Pd in-situ incorporation mediated hierarchical defects in corner-etched Cu2O octahedra for enhanced electrocatalytic nitrate reduction to ammonia," 2022, Applied Catalysis B: Environmental
  • "Interfacial polarization in metal-organic framework reconstructed Cu/Pd/CuOx multi-phase heterostructures for electrocatalytic nitrate reduction to ammonia," 2022, Applied Catalysis B: Environmental
  • "Methanol electroreforming coupled to green hydrogen production over bifunctional NiIr-based metal-organic framework nanosheet arrays," 2021, Applied Catalysis B: Environmental

Hongjing Wang frequently collaborates with several researchers, including:

  • Liang Wang
  • Ziqiang Wang
  • You Xu
  • Xiao-Nian Li
  • Hongjie Yu

Best Publications

  • Shape- and size-controlled synthesis in hard templates: sophisticated chemical reduction for mesoporous monocrystalline platinum nanoparticles.

    Hongjing Wang;Hu Young Jeong;Masataka Imura;Liang Wang

  • Defect‐Rich Porous Palladium Metallene for Enhanced Alkaline Oxygen Reduction Electrocatalysis

    Hongjie Yu;Tongqing Zhou;Ziqiang Wang;You Xu

  • Electrochemical synthesis of mesoporous Pt-Au binary alloys with tunable compositions for enhancement of electrochemical performance.

    Yusuke Yamauchi;Akihisa Tonegawa;Masaki Komatsu;Hongjing Wang

  • An ultrafine platinum–cobalt alloy decorated cobalt nanowire array with superb activity toward alkaline hydrogen evolution

    Ziqiang Wang;Ziqiang Wang;Xiang Ren;Yonglan Luo;Liang Wang

  • Surface Engineering of Defective and Porous Ir Metallene with Polyallylamine for Hydrogen Evolution Electrocatalysis

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  • Concave-convex surface oxide layers over copper nanowires boost electrochemical nitrate-to-ammonia conversion

    Tianlun Ren;Kaili Ren;Mingzhen Wang;Mengying Liu

  • Ambient Electrochemical Synthesis of Ammonia from Nitrogen and Water Catalyzed by Flower-Like Gold Microstructures.

    Ziqiang Wang;Yinghao Li;Hongjie Yu;You Xu

  • Rapid and Efficient Synthesis of Platinum Nanodendrites with High Surface Area by Chemical Reduction with Formic Acid

    Liang Wang;Hongjing Wang;Hongjing Wang;Yoshihiro Nemoto;Yusuke Yamauchi;Yusuke Yamauchi;Yusuke Yamauchi

  • Synthesis of Mesoporous Pt Films with Tunable Pore Sizes from Aqueous Surfactant Solutions

    Hongjing Wang;Hongjing Wang;Liang Wang;Takaaki Sato;Yasuhiro Sakamoto

  • Low-ruthenium-content NiRu nanoalloys encapsulated in nitrogen-doped carbon as highly efficient and pH-universal electrocatalysts for the hydrogen evolution reaction

    You Xu;Shuli Yin;Chunjie Li;Kai Deng

  • A hierarchical CoTe2–MnTe2 hybrid nanowire array enables high activity for oxygen evolution reactions

    Ziqiang Wang;Ziqiang Wang;Xiang Ren;Liang Wang;Guanwei Cui

  • Methanol electroreforming coupled to green hydrogen production over bifunctional NiIr-based metal-organic framework nanosheet arrays

    You Xu;Mengying Liu;Mingzhen Wang;Tianlun Ren

  • One-pot synthesis of PtRu nanodendrites as efficient catalysts for methanol oxidation reaction

    Shuanglong Lu;Kamel Eid;Danhua Ge;Jun Guo

  • Atomic defects in pothole-rich two-dimensional copper nanoplates triggering enhanced electrocatalytic selective nitrate-to-ammonia transformation

    You Xu;Mingzhen Wang;Kaili Ren;Tianlun Ren

  • Electrochemical Fabrication of Porous Au Film on Ni Foam for Nitrogen Reduction to Ammonia

    Hongjing Wang;Hongjie Yu;Ziqiang Wang;Yinghao Li

  • All-metal layer-by-layer films: bimetallic alternate layers with accessible mesopores for enhanced electrocatalysis

    Hongjing Wang;Hongjing Wang;Shinsuke Ishihara;Katsuhiko Ariga;Katsuhiko Ariga;Yusuke Yamauchi;Yusuke Yamauchi;Yusuke Yamauchi

  • Catalytic Upgrading of Ethanol to n-Butanol: Progress in Catalyst Development

    Xianyuan Wu;Geqian Fang;Yuqin Tong;Dahao Jiang

  • Integrating electrocatalytic hydrogen generation with selective oxidation of glycerol to formate over bifunctional nitrogen-doped carbon coated nickel-molybdenum-nitrogen nanowire arrays

    You Xu;Mengying Liu;Shengqi Wang;Kaili Ren

  • Direct synthesis of nanoporous carbon nitride fibers using Al-based porous coordination polymers (Al-PCPs)

    Ming Hu;Julien Reboul;Shuhei Furukawa;Logudurai Radhakrishnan

  • Metal-organic frameworks-derived Ru-doped Co2P/N-doped carbon composite nanosheet arrays as bifunctional electrocatalysts for hydrogen evolution and urea oxidation

    You Xu;Tianlun Ren;Kaili Ren;Shanshan Yu

  • One-pot synthesis of bi-metallic PdRu tripods as an efficient catalyst for electrocatalytic nitrogen reduction to ammonia

    Hongjing Wang;Yinghao Li;Chunjie Li;Kai Deng

  • Ir-Doped Ni-based metal-organic framework ultrathin nanosheets on Ni foam for enhanced urea electro-oxidation.

    You Xu;Xingjie Chai;Tianlun Ren;Shanshan Yu

  • A high-speed passive-matrix electrochromic display using a mesoporous TiO2 electrode with vertical porosity.

    Wu Weng;Tetsuya Higuchi;Masao Suzuki;Toshimi Fukuoka

Frequent Co-Authors

Liang Wang
Liang Wang Zhejiang University of Technology
Xiaonian Li
Xiaonian Li Zhejiang University of Technology
Hairong Xue
Hairong Xue Nanjing University of Aeronautics and Astronautics
Yusuke Yamauchi
Yusuke Yamauchi University of Queensland
Hongwei Gu
Hongwei Gu Soochow University
Liang Wang
Liang Wang Chinese Academy of Sciences
Victor Malgras
Victor Malgras National Institute for Materials Science
Zeid A. ALOthman
Zeid A. ALOthman King Saud University
Xiang Ren
Xiang Ren University of Jinan
Jun Guo
Jun Guo Peking University

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