World's Best Scientists 2026 revealed!

D-Index & Metrics

Engineering and Technology

D-Index
58
Citations
19853
World Ranking
2427
National Ranking
497

Overview

Zhiyi Lu is affiliated with the Chinese Academy of Sciences in China and has an extensive research portfolio primarily focused on engineering and energy fields. Their work covers significant subfields including renewable energy, sustainability and the environment, electrical and electronic engineering, materials chemistry, molecular biology, and water science and technology.

The scientist's research topics concentrate on several advanced areas such as electrocatalysts for energy conversion, advanced battery technologies, advanced photocatalysis techniques, fuel cells and related materials, advanced oxidation water treatment, CO2 reduction techniques and catalysts, and catalytic processes in materials science.

Some notable recent papers authored by Zhiyi Lu include:

  • Organic wastewater treatment by a single-atom catalyst and electrolytically produced H2O2 (2020, Nature Sustainability)
  • The Critical Role of Additive Sulfate for Stable Alkaline Seawater Oxidation on Nickel-Based Electrodes (2021, Angewandte Chemie International Edition)
  • Ammonia Thermal Treatment Toward Topological Defects in Porous Carbon for Enhanced Carbon Dioxide Electroreduction (2020, Advanced Materials)
  • Atomically Dispersed Lewis Acid Sites Boost 2-Electron Oxygen Reduction Activity of Carbon-Based Catalysts (2020, Nature Communications)
  • Concerning the Stability of Seawater Electrolysis: A Corrosion Mechanism Study of Halide on Ni-Based Anode (2023, Nature Communications)

Zhiyi Lu frequently collaborates with a core group of co-authors, including Wenwen Xu, Xu Chen, Ziqi Tian, Qihao Yang, and Liang Chen. These partnerships have yielded numerous publications and contributions to their main fields of study.

The scientist publishes regularly in several key academic venues, with multiple papers appearing in Advanced Materials, Nano Letters, Nature Communications, Nano Research, and the International Journal of Hydrogen Energy.

Best Publications

  • High-efficiency oxygen reduction to hydrogen peroxide catalysed by oxidized carbon materials

    Zhiyi Lu;Guangxu Chen;Samira Siahrostami;Zhihua Chen

  • CoSe2 Nanoparticles Grown on Carbon Fiber Paper: An Efficient and Stable Electrocatalyst for Hydrogen Evolution Reaction

    Desheng Kong;Haotian Wang;Zhiyi Lu;Yi Cui

  • Bifunctional non-noble metal oxide/chalcogenide nanoparticle electrocatalysts through lithium-induced conversion for overall water-splitting

    Yi Cui;Haotian Wang

  • Electrochemical tuning of vertically aligned MoS2 nanofilms and its application in improving hydrogen evolution reaction.

    Haotian Wang;Zhiyi Lu;Shicheng Xu;Desheng Kong

  • Ultrahigh Hydrogen Evolution Performance of Under-Water “Superaerophobic” MoS2 Nanostructured Electrodes

    Zhiyi Lu;Wei Zhu;Xiaoyou Yu;Haichuan Zhang

  • Three-dimensional NiFe layered double hydroxide film for high-efficiency oxygen evolution reaction.

    Zhiyi Lu;Wenwen Xu;Wei Zhu;Qiu Yang

  • Nitrogen-doped tungsten carbide nanoarray as an efficient bifunctional electrocatalyst for water splitting in acid.

    Nana Han;Ke R. Yang;Zhiyi Lu;Yingjie Li

  • Organic wastewater treatment by a single-atom catalyst and electrolytically produced H2O2.

    Jinwei Xu;Xueli Zheng;Zhiping Feng;Zhiyi Lu

  • Electrochemical Tuning of MoS2 Nanoparticles on Three-Dimensional Substrate for Efficient Hydrogen Evolution

    Haotian Wang;Zhiyi Lu;Desheng Kong;Jie Sun

  • Superwetting Electrodes for Gas-Involving Electrocatalysis

    Wenwen Xu;Zhiyi Lu;Xiaoming Sun;Lei Jiang

  • Electrochemical tuning of layered lithium transition metal oxides for improvement of oxygen evolution reaction

    Zhiyi Lu;Haotian Wang;Desheng Kong;Kai Yan

  • Under-Water Superaerophobic Pine-Shaped Pt Nanoarray Electrode for Ultrahigh-Performance Hydrogen Evolution

    Yingjie Li;Haichuan Zhang;Tianhao Xu;Zhiyi Lu

  • Transition-Metal Single Atoms in a Graphene Shell as Active Centers for Highly Efficient Artificial Photosynthesis

    Kun Jiang;Samira Siahrostami;Austin J. Akey;Yanbin Li

  • Trinary Layered Double Hydroxides as High‐Performance Bifunctional Materials for Oxygen Electrocatalysis

    Li Qian;Zhiyi Lu;Tianhao Xu;Xiaochao Wu

  • Atomic layer deposition of stable lithium ion conductive interfacial layer for stable cathode cycling

    Yi Cui;Jin Xie

  • Ternary NiFeMn layered double hydroxides as highly-efficient oxygen evolution catalysts

    Zhiyi Lu;Li Qian;Yang Tian;Yaping Li

  • The Critical Role of Additive Sulfate for Stable Alkaline Seawater Oxidation on Nickel-Based Electrodes.

    Tengfei Ma;Wenwen Xu;Boran Li;Boran Li;Xu Chen

  • Beta-phased Ni(OH)2 nanowall film with reversible capacitance higher than theoretical Faradic capacitance

    Zhiyi Lu;Zheng Chang;Wei Zhu;Xiaoming Sun

  • Superaerophobic electrodes for direct hydrazine fuel cells.

    Zhiyi Lu;Ming Sun;Tianhao Xu;Yingjie Li

  • Superaerophilic carbon-nanotube-array electrode for high-performance oxygen reduction reaction

    Zhiyi Lu;Wenwen Xu;Jun Ma;Yingjie Li

  • Metal oxide and hydroxide nanoarrays: Hydrothermal synthesis and applications as supercapacitors and nanocatalysts

    Qiu Yang;Zhiyi Lu;Junfeng Liu;Xiaodong Lei

  • Ultrathin Co3O4 nanosheet arrays with high supercapacitive performance

    Qiu Yang;Zhiyi Lu;Xiaoming Sun;Junfeng Liu

  • Hierarchical construction of an ultrathin layered double hydroxide nanoarray for highly-efficient oxygen evolution reaction

    Qiu Yang;Tian Li;Zhiyi Lu;Xiaoming Sun

Frequent Co-Authors

Xiaoming Sun
Xiaoming Sun Beijing University of Chemical Technology
Yi Cui
Yi Cui Stanford University
Junfeng Liu
Junfeng Liu Beijing University of Chemical Technology
Xiaodong Lei
Xiaodong Lei Beijing University of Chemical Technology
Xue Duan
Xue Duan Beijing University of Chemical Technology
Haotian Wang
Haotian Wang Rice University
Yingjie Li
Yingjie Li Anhui University of Technology
Desheng Kong
Desheng Kong Nanjing University
Lei Jiang
Lei Jiang Chinese Academy of Sciences
Jens K. Nørskov
Jens K. Nørskov Technical University of Denmark

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