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2025

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Materials Science

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Citations
9242
World Ranking
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  • 2025 - Research.com Rising Stars Award

Overview

Chade Lv is affiliated with the Harbin Institute of Technology in China, focusing research on engineering, energy, and materials science. Their work spans multiple subfields including renewable energy, sustainability and the environment, electrical and electronic engineering, catalysis, materials chemistry, and computer networks and communications.

The scientist's main research topics include advanced photocatalysis techniques, ammonia synthesis and nitrogen reduction, advanced battery materials and technologies, advancements in battery materials, covalent organic framework applications, and supercapacitor materials and fabrication.

Chade Lv has contributed to various scientific publications, with recent notable papers including:

  • Selective electrocatalytic synthesis of urea with nitrate and carbon dioxide, 2021, Nature Sustainability
  • Machine Learning: An Advanced Platform for Materials Development and State Prediction in Lithium-Ion Batteries, 2021, Advanced Materials
  • A Defect Engineered Electrocatalyst that Promotes High-Efficiency Urea Synthesis under Ambient Conditions, 2022, ACS Nano

Some other key papers linked to frequent collaborators include:

  • Architecting a Stable High-Energy Aqueous Al-Ion Battery, 2020, Journal of the American Chemical Society
  • Promoting Electrocatalytic Hydrogen Evolution Reaction and Oxygen Evolution Reaction by Fields: Effects of Electric Field, Magnetic Field, Strain, and Light, 2020, Small Methods

The scientist often collaborates with peers such as Chunshuang Yan, Gang Chen, Qingyu Yan, Hengjie Liu, and Daobin Liu, reflecting an active engagement in joint research ventures.

Chade Lv's publications are frequently found in venues such as the Journal of Colloid and Interface Science, Chemical Engineering Journal, Angewandte Chemie International Edition, Angewandte Chemie, and Small, with multiple articles across each of these journals.

Best Publications

  • Defect Engineering Metal‐Free Polymeric Carbon Nitride Electrocatalyst for Effective Nitrogen Fixation under Ambient Conditions

    Chade Lv;Chade Lv;Yumin Qian;Chunshuang Yan;Chunshuang Yan;Yu Ding

  • Selective electrocatalytic synthesis of urea with nitrate and carbon dioxide

    Chade Lv;Lixiang Zhong;Hengjie Liu;Zhiwei Fang

  • An Amorphous Noble-Metal-Free Electrocatalyst that Enables Nitrogen Fixation under Ambient Conditions.

    Chade Lv;Chade Lv;Chunshuang Yan;Chunshuang Yan;Gang Chen;Yu Ding

  • Template‐Based Engineering of Carbon‐Doped Co3O4 Hollow Nanofibers as Anode Materials for Lithium‐Ion Batteries

    Chunshuang Yan;Gang Chen;Xin Zhou;Jingxue Sun

  • Machine Learning: An Advanced Platform for Materials Development and State Prediction in Lithium-Ion Batteries.

    Chade Lv;Xin Zhou;Lixiang Zhong;Chunshuang Yan

  • Architecting a Stable High-Energy Aqueous Al-Ion Battery

    Chunshuang Yan;Chunshuang Yan;Chade Lv;Liguang Wang;Wei Cui

  • High-efficiency Fe-Mediated Bi2MoO6 nitrogen-fixing photocatalyst: Reduced surface work function and ameliorated surface reaction

    Qingqiang Meng;Chade Lv;Jingxue Sun;Weizhao Hong

  • A bismuth rich hollow Bi4O5Br2 photocatalyst enables dramatic CO2 reduction activity

    Xiaoli Jin;Chade Lv;Xin Zhou;Haiquan Xie

  • Promoting Electrocatalytic Hydrogen Evolution Reaction and Oxygen Evolution Reaction by Fields: Effects of Electric Field, Magnetic Field, Strain, and Light

    Jiandong Yao;Wenjing Huang;Wei Fang;Min Kuang

  • Reversible Al Metal Anodes Enabled by Amorphization for Aqueous Aluminum Batteries.

    Unknown

  • An Amorphous Noble‐Metal‐Free Electrocatalyst that Enables Nitrogen Fixation under Ambient Conditions

    Unknown

  • Rechargeable Aqueous Aluminum-Ion Battery: Progress and Outlook.

    Unknown

  • Molecular adsorption promotes carrier migration: Key step for molecular oxygen activation of defective Bi4O5I2

    Xiaoli Jin;Chade Lv;Xin Zhou;Congmin Zhang

  • Boosting Electrocatalytic Ammonia Production through Mimicking “π Back-Donation”

    Chade Lv;Lixiang Zhong;Yao Yao;Daobin Liu

  • Oxygen Vacancy Engineering of Bi24O31Cl10 for Boosted Photocatalytic CO2 Conversion

    Xiaoli Jin;Chade Lv;Xin Zhou;Liqun Ye

  • Achieving Ni3V2O8 amorphous wire encapsulated in crystalline tube nanostructure as anode materials for lithium ion batteries

    Chade Lv;Jingxue Sun;Gang Chen;Chunshuang Yan

  • Engineering 2D Nanofluidic Li-Ion Transport Channels for Superior Electrochemical Energy Storage.

    Chunshuang Yan;Chade Lv;Yue Zhu;Gang Chen

  • Dual ions intercalation drives high-performance aqueous Zn-ion storage on birnessite-type manganese oxides cathode

    Unknown

  • Oxygen-Induced Bi5+-Self-Doped Bi4V2O11 with a p–n Homojunction Toward Promoting the Photocatalytic Performance

    Chade Lv;Gang Chen;Xin Zhou;Congmin Zhang

  • Mimicking π Backdonation in Ce-MOFs for Solar-Driven Ammonia Synthesis.

    Congmin Zhang;Yanling Xu;Chade Lv;Xin Zhou

  • Construction of Bi2WO6 homojunction via QDs self-decoration and its improved separation efficiency of charge carriers and photocatalytic ability

    Chunmei Li;Gang Chen;Jingxue Sun;Hongjun Dong

  • Stability, durability and regeneration ability of a novel Ag-based photocatalyst, Ag2Nb4O11.

    Hongjun Dong;Gang Chen;Jingxue Sun;Yujie Feng

  • Highly-effective photocatalytic properties and interfacial transfer efficiencies of charge carriers for the novel Ag2CO3/AgX heterojunctions achieved by surface modification

    Hongjun Dong;Gang Chen;Jingxue Sun;Yujie Feng

  • An All-Organic D-A System for Visible-Light-Driven Overall Water Splitting

    Zhao Mo;Zhao Mo;Jun Di;Pengcheng Yan;Chade Lv

  • An advanced Ag-based photocatalyst Ag2Ta4O11 with outstanding activity, durability and universality for removing organic dyes

    Hongjun Dong;Jingxue Sun;Gang Chen;Chunmei Li

Frequent Co-Authors

Jingxue Sun
Jingxue Sun Harbin Institute of Technology
Guihua Yu
Guihua Yu The University of Texas at Austin
Chunmei Li
Chunmei Li Jiangsu University
Hongjun Dong
Hongjun Dong Jiangsu University
Qingyu Yan
Qingyu Yan Nanyang Technological University
Jian Pei
Jian Pei Peking University
Yu Ding
Yu Ding Georgia Institute of Technology
Daobin Liu
Daobin Liu Tongji University
Shuzhou Li
Shuzhou Li Nanyang Technological University
Chuntai Liu
Chuntai Liu Zhengzhou University

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