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Chun He

Sun Yat-sen University · CN
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Area of research
Nuclear and High Energy Physics · Renewable Energy, Sustainability and the Environment
Research interest
Research interests include Advanced Photocatalysis Techniques, Nuclear physics research studies, Catalytic Processes in Materials Science, and Atomic and Molecular Physics.
h-index
53
citations
9,980
works
332
NIH funding
primary concept
email

Recent publications

One-Step Strategy to Maximize Single-Atom Catalyst Utilization in Nitrate Reduction via Bidirectional Optimization of Mass Transfer and Electron Supply
Environmental Science & Technology 2025cited by 25position: lastdoi
Nanoconfinement‐Enabled Resistance to Water Matrix Components for Selective Degradation of Micropollutants
Angewandte Chemie International Edition 2025cited by 17position: middledoi
Advancements in Electrocatalytic Nitrogen Reduction: A Comprehensive Review of Single‐Atom Catalysts for Sustainable Ammonia Synthesis
Small 2024cited by 66position: lastdoi
Precisely constructing orbital coupling-modulated iron dinuclear site for enhanced catalytic ozonation performance
Proceedings of the National Academy of Sciences 2024cited by 42position: lastdoi
Refining Asymmetric Low‐Coordinated Fe‐N<sub>3</sub> Motif to Boost Catalytic Ozonation Activity
Advanced Functional Materials 2024cited by 32position: lastdoi
Exploring microenvironmental configuration effects of Cu-based catalysts on nitrate electrocatalytic reduction selectivity
Applied Catalysis B: Environmental 2024cited by 31position: lastdoi
Engineering of Graphitic Carbon Nitride (g‐C <sub>3</sub> N <sub>4</sub> ) Based Photocatalysts for Atmospheric Protection: Modification Strategies, Recent Progress, and Application Challenges
Small 2024cited by 29position: lastdoi
Surface Mn-O3* complex-mediated nonradical electron transfer for boosting catalytic ozonation of organic pollutants
Applied Catalysis B: Environmental 2024cited by 23position: middledoi
Local microenvironment modulation of Pt0/Pt2+ nano-clusters inducing synchronous mass transfer effect to boost catalytic ozonation
Applied Catalysis B: Environmental 2024cited by 18position: lastdoi
Optimization of Carbon‐Defect Engineering to Boost Catalytic Ozonation Efficiency of Single Fe─N<sub>4</sub> Coordination Motif
Small 2024cited by 16position: lastdoi
Hierarchical Porous Rod‐Like In<sub>2</sub>S<sub>3</sub>/In<sub>2</sub>O<sub>3</sub> Structures for Trimethylamine Detection
ChemNanoMat 2024cited by 3position: middledoi
Cation Substitution Induced d‐Band Center Modulation on Cobalt‐Based Spinel Oxides for Catalytic Ozonation
Advanced Functional Materials 2023cited by 114position: lastdoi
Accelerated Catalytic Ozonation in a Mesoporous Carbon-Supported Atomic Fe–N<sub>4</sub> Sites Nanoreactor: Confinement Effect and Resistance to Poisoning
Environmental Science & Technology 2023cited by 94position: lastdoi
Catalytic ozonation mechanism over M1-N3C1 active sites
Nature Communications 2023cited by 77position: middledoi
Boron-doped porous carbon boosts electron transport efficiency for enhancing Fenton-like oxidation capacity: High-speed driving of Fe(III) reduction
Applied Catalysis B: Environmental 2023cited by 49position: lastdoi
Nitrate Protects Microorganisms and Promotes Formation of Toxic Nitrogenous Byproducts during Water Disinfection by Far-UVC Radiation
Environmental Science & Technology 2023cited by 47position: middledoi
Rapid Inactivation of Fungal Spores in Drinking Water by Far-UVC Photolysis of Free Chlorine
Environmental Science & Technology 2023cited by 38position: middledoi
Interstitial carbon-platinum electronic metal-support interaction structure boost synergistic removal of O3 and CH3SH via surface atomic oxygen
Applied Catalysis B: Environmental 2023cited by 32position: middledoi
Enhanced Catalytic Ozonation for Eliminating CH<sub>3</sub>SH <i>via</i> Stable and Circular Electronic Metal–Support Interactions of Si–O–Mn Bonds with Low Mn Loading
Environmental Science & Technology 2022cited by 110position: lastdoi
Progress in metal-organic-framework-based single-atom catalysts for environmental remediation
Coordination Chemistry Reviews 2022cited by 99position: middledoi
Electron Transfer Trade-offs in MOF-Derived Cobalt-Embedded Nitrogen-Doped Carbon Nanotubes Boost Catalytic Ozonation for Gaseous Sulfur-Containing VOC Elimination
ACS Catalysis 2022cited by 75position: middledoi
Self-Accelerating Interfacial Catalytic Elimination of Gaseous Sulfur-Containing Volatile Organic Compounds as Microbubbles in a Facet-Engineered Three-Dimensional BiOCl Sponge Fenton-Like Process
Environmental Science & Technology 2022cited by 54position: middledoi
Nanomaterial-enabled photothermal-based solar water disinfection processes: Fundamentals, recent advances, and mechanisms
Journal of Hazardous Materials 2022cited by 49position: middledoi
Overlooked self-catalytic mechanism in phenolic moiety-mediated Fenton-like system: Formation of Fe(III) hydroperoxide complex and co-treatment of refractory pollutants
Applied Catalysis B: Environmental 2022cited by 48position: middledoi
A modified flower pollen-based photothermocatalytic process for enhanced solar water disinfection: Photoelectric effect and bactericidal mechanisms
Water Research 2022cited by 40position: middledoi
Enhanced Fenton-like catalysis for pollutants removal via MOF-derived CoxFe3−xO4 membrane: Oxygen vacancy-mediated mechanism
Chemosphere 2022cited by 35position: middledoi
Enhanced Catalytic Ozonation for Eliminating CH<sub>3</sub>SH via Graphene-Supported Positively Charged Atomic Pt Undergoing Pt<sup>2+</sup>/Pt<sup>4+</sup> Redox Cycle
Environmental Science & Technology 2021cited by 98position: lastdoi
Multifunctional Au/Ti<sub>3</sub>C<sub>2</sub> Photothermal Membrane with Antibacterial Ability for Stable and Efficient Solar Water Purification under the Full Spectrum
ACS Sustainable Chemistry & Engineering 2021cited by 89position: middledoi
Realizing a redox-robust Ag/MnO2 catalyst for efficient wet catalytic ozonation of S-VOCs: Promotional role of Ag(0)/Ag(I)-Mn based redox shuttle
Applied Catalysis B: Environmental 2021cited by 86position: firstdoi
Grey Fe-CeO2-σ for boosting photocatalytic ozonation of refractory pollutants: Roles of surface and bulk oxygen vacancies
Applied Catalysis B: Environmental 2021cited by 80position: middledoi

Grants

No grants ingested yet.

Frequent collaborators

· 32 papers (2013–2025)Dehua Xia · Sun Yat-sen University25 papers (2018–2023)Shuanghong Tian · Sun Yat-sen University21 papers (2012–2025)Yajing Huang · Tongji University15 papers (2016–2023)Lingling Hu · Sun Yat-sen University14 papers (2014–2024)Wei Qu · China Pharmaceutical University13 papers (2021–2024)Zhuoyun Tang · Shenzhen University13 papers (2020–2024)Huinan Zhao · Sun Yat-sen University13 papers (2021–2025)Tao P. Zhong · East China Normal University9 papers (2022–2025)Qiyu Lian · Future Earth9 papers (2021–2024)Ya Xiong · Sun Yat-sen University7 papers (2012–2024)Po Keung Wong · Guangdong University of Technology6 papers (2018–2022)Dingren Ma · Zhejiang Normal University6 papers (2021–2023)Cheng Chen · Fujian Normal University5 papers (2021–2023)Hailin Wen · Qiqihar Medical University5 papers (2022–2024)Jingyun Fang · Chizhou University5 papers (2023–2025)Su Tang · Sun Yat-sen University5 papers (2023–2024)Ran Yin · Purdue University West Lafayette5 papers (2019–2023)Xianhu Long · Sun Yat-sen University5 papers (2024–2025)Yuhong Liao · Mae Fah Luang University5 papers (2018–2022)
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