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Peng Zhang

South China Agricultural University · CN
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Area of research
Electrical and Electronic Engineering · Renewable Energy, Sustainability and the Environment
Research interest
Research interests include Advancements in Battery Materials, Advanced Photocatalysis Techniques, Advanced Battery Materials and Technologies, and Supercapacitor Materials and Fabrication.
h-index
118
citations
50,826
works
1,138
NIH funding
primary concept
email

Recent publications

Ground-state charge transfer in single-molecule junctions covalent organic frameworks for boosting photocatalytic hydrogen evolution
Nature Communications 2025cited by 86position: middledoi
Constructing S-scheme heterojunction between porphyrinyl covalent organic frameworks and Nb2C MXene for photocatalytic H2O2 production
CHINESE JOURNAL OF CATALYSIS (CHINESE VERSION) 2025cited by 67position: middledoi
Structural design and property regulation of organic polymers for photocatalytic synthesis of H <sub>2</sub> O <sub>2</sub>
InfoScience. 2025cited by 4position: middledoi
Effect of sodium chloride on the visual appearance, gelling properties and structural characteristics of gelatin-low acyl gellan gum
LWT 2025cited by 1position: middledoi
Morphological effects of WO3 in metal sulfide-based S-Scheme heterojunctions for boosting photocatalytic hydrogen production
Journal of Material Science and Technology 2024cited by 129position: middledoi
Fluorenone‐Based Covalent Triazine Frameworks/Twinned Zn<sub>0.5</sub>Cd<sub>0.5</sub>S S‐scheme Heterojunction for Efficient Photocatalytic H<sub>2</sub> Evolution
Advanced Functional Materials 2024cited by 124position: middledoi
2D/2D Hydrogen‐Bonded Organic Frameworks/Covalent Organic Frameworks S‐Scheme Heterojunctions for Photocatalytic Hydrogen Evolution
Angewandte Chemie International Edition 2024cited by 99position: middledoi
Double enhancement of protonation and conjugation in donor–imine–donor covalent organic frameworks for photocatalytic hydrogen evolution
Chemical Science 2024cited by 41position: middledoi
2D/2D Hydrogen‐Bonded Organic Frameworks/Covalent Organic Frameworks S‐Scheme Heterojunctions for Photocatalytic Hydrogen Evolution
Angewandte Chemie 2024cited by 32position: middledoi
Asymmetric Associate Configuration of Nb Single Atoms Coupled Bi–O Vacancy Pairs Boosting CO<sub>2</sub> Photoreduction
ACS Catalysis 2024cited by 27position: middledoi
Integrating Sulfido Ligands into Thiolate-Gold(I) Clusters via Competing Bonding
CCS Chemistry 2024cited by 8position: middledoi
TRIM6 promotes glioma malignant progression by enhancing FOXO3A ubiquitination and degradation
Translational Oncology 2024cited by 4position: middledoi
PDLSC-CM Targets HAPLN1 in Macrophages to Reduce Root Resorption in Delayed Replanted Teeth
SSRN Electronic Journal 2024cited by 0position: middledoi
MIL-101(Fe)/BiOBr S-scheme photocatalyst for promoting photocatalytic abatement of Cr(VI) and enrofloxacin antibiotic: Performance and mechanism
CHINESE JOURNAL OF CATALYSIS (CHINESE VERSION) 2023cited by 300position: middledoi
In Situ Synthesis of Chemically Bonded 2D/2D Covalent Organic Frameworks/O‐Vacancy WO<sub>3</sub> Z‐Scheme Heterostructure for Photocatalytic Overall Water Splitting
Advanced Materials 2023cited by 246position: middledoi
Efficient Photocatalytic Hydrogen Evolution by Modulating Excitonic Effects in Ni‐Intercalated Covalent Organic Frameworks
Advanced Energy Materials 2023cited by 176position: middledoi
Realizing Photocatalytic Overall Water Splitting by Modulating the Thickness‐Induced Reaction Energy Barrier of Fluorenone‐Based Covalent Organic Frameworks
Advanced Materials 2023cited by 122position: middledoi
2D semiconductor nanosheets for solar photocatalysis
EcoEnergy 2023cited by 98position: lastdoi
Fluorenone-based covalent organic frameworks with efficient exciton dissociation and well-defined active center for remarkable photocatalytic hydrogen evolution
Applied Catalysis B: Environmental 2023cited by 97position: middledoi
Heteroatom‐ and Bonded Z‐Scheme Channels‐Modulated Ultrafast Carrier Dynamics and Exciton Dissociation in Covalent Triazine Frameworks for Efficient Photocatalytic Hydrogen Evolution
Advanced Functional Materials 2023cited by 84position: middledoi
Boosting Photocatalytic Hydrogen Evolution Through Local Charge Polarization in Chemically Bonded Single‐Molecule Junctions Between Ketone Molecules and Covalent Organic Frameworks
Advanced Functional Materials 2023cited by 65position: middledoi
Inducing local charge polarization by constructing isomeric covalent organic frameworks with different orientations of imine bonds for enhancing photocatalytic hydrogen evolution
Journal of Materials Chemistry A 2023cited by 46position: middledoi
Assembling Ti<sub>3</sub>C<sub>2</sub>MXene on a S‐Scheme Heterojunction with Oxidative Covalent Organic Frameworks for Photocatalytic Hydrogen Evolution
Solar RRL 2023cited by 22position: middledoi
Efficient Quantum Dot Light-Emitting Diode Enabled by a Thick Inorganic CdS Interfacial Modification Layer
ACS Applied Materials & Interfaces 2023cited by 15position: middledoi
Unveiling the amorphization of sodalite topology zeolitic imidazolate frameworks and zeolites by pressure and stress
Journal of the American Ceramic Society 2023cited by 7position: middledoi
A review on heterogeneous photocatalysis for environmental remediation: From semiconductors to modification strategies
CHINESE JOURNAL OF CATALYSIS (CHINESE VERSION) 2022cited by 798position: middledoi
Sulfur-doped g-C3N4/g-C3N4 isotype step-scheme heterojunction for photocatalytic H2 evolution
Journal of Material Science and Technology 2022cited by 375position: middledoi
Integration of 2D layered CdS/WO3 S-scheme heterojunctions and metallic Ti3C2 MXene-based Ohmic junctions for effective photocatalytic H2 generation
CHINESE JOURNAL OF CATALYSIS (CHINESE VERSION) 2022cited by 368position: middledoi
Rationally designed Ta3N5/BiOCl S-scheme heterojunction with oxygen vacancies for elimination of tetracycline antibiotic and Cr(VI): Performance, toxicity evaluation and mechanism insight
Journal of Material Science and Technology 2022cited by 311position: middledoi
<i>In situ</i> construction of a C<sub>3</sub>N<sub>5</sub> nanosheet/Bi<sub>2</sub>WO<sub>6</sub> nanodot S-scheme heterojunction with enhanced structural defects for the efficient photocatalytic removal of tetracycline and Cr(<scp>vi</scp>)
Inorganic Chemistry Frontiers 2022cited by 276position: middledoi

Grants

No grants ingested yet.

Frequent collaborators

Xin Li · Shandong University47 papers (2018–2025)Rongchen Shen · South China Agricultural University36 papers (2020–2025)Neng Li · Guangzhou University of Chinese Medicine15 papers (2021–2023)Lei Hao · South China Agricultural University11 papers (2022–2025)Youji Li · South China Agricultural University9 papers (2022–2025)Guijie Liang · Hubei University of Arts and Science9 papers (2022–2025)Yun Hau Ng · Shandong University8 papers (2020–2022)Arramel Arramel · National University of Singapore7 papers (2021–2023)Junxian Bai · South China Agricultural University7 papers (2021–2023)Can Huang · South China Agricultural University6 papers (2022–2025)Zi‐Zhan Liang · Sun Yat-sen University6 papers (2020–2023)Shijie Li · Guangzhou University of Chinese Medicine5 papers (2021–2025)Kaihui Huang · South China Agricultural University5 papers (2022–2024)Chaochao Qin · Henan Normal University5 papers (2023–2023)Jizhou Jiang · National University of Singapore5 papers (2021–2022)Zhimin Jiang · South China Agricultural University4 papers (2020–2022)Chunchun Wang · Ministry of Education of the People's Republic of China4 papers (2021–2023)Yexiang Tong · Sun Yat-sen University4 papers (2012–2019)Qing Chen · National Bureau of Statistics of China3 papers (2020–2021)Weilin Chen · South China Agricultural University3 papers (2021–2022)
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