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Ziyun Wang

University of Auckland · NZ
Area of research
Renewable Energy, Sustainability and the Environment · Materials Chemistry
Research interest
Research interests include Electrocatalysts for Energy Conversion, CO2 Reduction Techniques and Catalysts, Catalytic Processes in Materials Science, and Ionic liquids properties and applications.
h-index
67
citations
23,098
works
319
NIH funding
primary concept
Chemistry
email

Recent publications

Isotopic labelling of water reveals the hydrogen transfer route in electrochemical CO2 reduction
Nature Chemistry 2025cited by 67position: middledoi
Asymmetric CO–CHO Coupling over Pr Single-Atom Alloy Enables Industrial-Level Electrosynthesis of Ethylene
Journal of the American Chemical Society 2025cited by 65position: middledoi
Activating inert non-defect sites in Bi catalysts using tensile strain engineering for highly active CO2 electroreduction
Nature Communications 2025cited by 63position: middledoi
Tuning Transition Metal 3d Spin state on Single‐atom Catalysts for Selective Electrochemical CO<sub>2</sub> Reduction
Advanced Materials 2025cited by 57position: middledoi
Directing the C–N Coupling Pathway Enables Efficient Urea Electrosynthesis
Journal of the American Chemical Society 2025cited by 56position: middledoi
Tandem amine scrubbing and CO2 electrolysis via direct piperazine carbamate reduction
Nature Energy 2025cited by 20position: middledoi
Ethylene electrosynthesis at low voltages enabled by dopant-induced modulation of the rate-determining step
Nature Synthesis 2025cited by 12position: middledoi
Modulating Single‐Atom Pt Coordination for Enhanced Low‐Temperature Ammonia Fuel Cell Electrocatalysis
Advanced Materials 2025cited by 10position: middledoi
Interfacial Modification of Conjugated Coordination Polymers for Efficient and Selective Nitrogen Electroreduction to Ammonia
ACS Nano 2025cited by 5position: middledoi
Ligand-tuning copper in coordination polymers for efficient electrochemical C–C coupling
Nature Communications 2024cited by 67position: middledoi
The role of P3H family in cancer: implications for prognosis, tumor microenvironment and drug sensitivity
Frontiers in Oncology 2024cited by 6position: firstdoi
Promoting CO<sub>2</sub> Electroreduction to Multi‐Carbon Products by Hydrophobicity‐Induced Electro‐Kinetic Retardation
Angewandte Chemie International Edition 2023cited by 80position: middledoi
Environmental inequalities and multimorbidity: Insights from the Southwest China Multi-Ethnic Cohort Study
The Science of The Total Environment 2023cited by 10position: middledoi
Strain in Copper/Ceria Heterostructure Promotes Electrosynthesis of Multicarbon Products
ACS Nano 2022cited by 67position: middledoi
Coordination Polymer Electrocatalysts Enable Efficient CO‐to‐Acetate Conversion
Advanced Materials 2022cited by 53position: middledoi
Stabilizing Highly Active Ru Sites by Suppressing Lattice Oxygen Participation in Acidic Water Oxidation
Journal of the American Chemical Society 2021cited by 538position: middledoi
Exposure to air pollution is associated with an increased risk of metabolic dysfunction-associated fatty liver disease
Journal of Hepatology 2021cited by 227position: middledoi
Accelerated discovery of CO2 electrocatalysts using active machine learning
Nature 2020cited by 1,470position: middledoi
Enhanced Nitrate-to-Ammonia Activity on Copper–Nickel Alloys via Tuning of Intermediate Adsorption
Journal of the American Chemical Society 2020cited by 1,316position: middledoi
High-valence metals improve oxygen evolution reaction performance by modulating 3d metal oxidation cycle energetics
Nature Catalysis 2020cited by 726position: middledoi
Enhanced multi-carbon alcohol electroproduction from CO via modulated hydrogen adsorption
Nature Communications 2020cited by 144position: middledoi
Molecular tuning of CO2-to-ethylene conversion
Nature 2019cited by 1,241position: middledoi
Enhancement of nitrogen removal by supplementing fluidized-carriers into the aerobic tank in a full-scale A2/O system
The Science of The Total Environment 2019cited by 39position: middledoi
Enantioselective tandem reaction over a site-isolated bifunctional catalyst
Chemical Communications 2016cited by 25position: middledoi

Grants

No grants ingested yet.

Frequent collaborators

Yanwei Lum · Tianjin University6 papers (2020–2025)Yu Mao · Xinjiang University4 papers (2025–2025)Edward H. Sargent · Northwestern University4 papers (2020–2021)Ruihu Lu · Huazhong University of Science and Technology4 papers (2023–2025)Jun Li · Xi’an University4 papers (2020–2024)Yuhang Wang · Zhejiang Sci-Tech University4 papers (2020–2023)Cao‐Thang Dinh · Queen's University3 papers (2020–2021)Qin Yang · National University of Singapore3 papers (2025–2025)B.X. Wang · National University of Singapore3 papers (2025–2025)Fengwang Li · Australian Research Council3 papers (2020–2024)Mingsheng Zhang · Kunming University of Science and Technology3 papers (2025–2025)Bo Zhang · Changchun University of Chinese Medicine2 papers (2020–2021)Phil De Luna · Artificial Intelligence in Medicine (Canada)2 papers (2020–2021)Mingchuan Luo · King University2 papers (2020–2020)Tao‐Tao Zhuang · University of Science and Technology of China2 papers (2020–2021)Yipeng Zang · National University of Singapore2 papers (2025–2025)Xing Zhao · Sichuan University2 papers (2021–2023)Wan Ru Leow · Agency for Science, Technology and Research2 papers (2025–2025)Ji‐Guang Zhang · Agency for Science, Technology and Research2 papers (2025–2025)Adnan Ozden · Khalifa University of Science and Technology2 papers (2020–2022)