Wenjun Wang
Affiliation confirmed via AI analysis of OpenAlex, ORCID, and web sources.
Researcher
Also affiliated: Shihezi University (2022); Sinopec (China) (2008–2013); Leiden University (2024); Beijing Institute of Technology (2010–2016); University of Science and Technology of China (2021–2023); Union Hospital (2006); Central South University (2015); Southwest University (2023); Anhui University (2015); University of Electronic Science and Technology of China (2025); Tianjin University (2021–2025); Yangtze University (2024); Shenzhen University (2024); Zhengzhou University of Aeronautics (2016); China Academy of Space Technology (2018); Wuhan University of Technology (2023–2025); Liaocheng University (2006–2025); Chinese Academy of Sciences (2000–2025); National Institutes of Natural Sciences (2025); Hong Kong University of Science and Technology (2025); China University of Petroleum, Beijing (2017); Nankai University (2021–2024); Fudan University (2000); Beijing Normal University (2004); Leiden University Medical Center (2025); Hefei Institutes of Physical Science (2021–2023); Lanzhou Jiaotong University (2024); Hefei University (2014); Nanjing University of Posts and Telecommunications (2017); Crystal Research (United States) (2015–2019); Institute of Food Science and Technology (2020); Institute of Microbiology (2025); Northeast Institute of Geography and Agroecology (2002); Netherlands Metabolomics Centre (2025); High Magnetic Field Laboratory (2023); Czech Academy of Sciences, Institute of Plasma Physics (2014); Institute of Biophysics (2016–2021); Songshan Lake Materials Laboratory (2019–2023); Guangzhou Chemistry (China) (2008); Centre of Plasma Physics - Institute for Plasma Research (2014); FZU ‒ Institute of Physics of the Academy of Sciences of the Czech Republic (2011–2025); Czech Academy of Sciences, Institute of Microbiology (2025); Yunnan Center for Disease Control And Prevention (2010); Quzhou University (2024); Shanghai Institute of Applied Physics (2024); Institute of Genetics and Developmental Biology (2022–2024); Guangzhou Institute of Energy Conversion (2018–2023); Institute of Software (2000); The First People’s Hospital of Lianyungang (2019); National Institute of Research and Development for Electrochemistry and Condensed (2025); Second Affiliated Hospital of Xi'an Jiaotong University (2024); Beijing Institute of Nanoenergy and Nanosystems (2024); Institute of Microbiology (2025); Chinese Academy of Agricultural Sciences (2020); Center for Excellence in Molecular Plant Sciences (2024–2025); Hangzhou DAC Biotech (China) (2021); Institute for Molecular Science (2025); Research Center for Eco-Environmental Sciences (2002); Xian Yang Central Hospital (2019); Sanya University (2023); Chinese Academy of Science and Technology for Development (2014); Ministry of Agriculture and Rural Affairs (2020); Education Department of Hunan Province (2024); State Key Laboratory of Chemical Engineering (2014–2024); The Synergetic Innovation Center for Advanced Materials (2017); Institute of Physics (2002–2025); Qilu Hospital of Shandong University (2018); National Laboratory for Superconductivity (2010–2025); University of Chinese Academy of Sciences (2009–2025); Wuhan University of Science and Technology (2011); The University of Texas at San Antonio (2018); Changchun University (2021); Hunan University of Technology (2024); Zhejiang University of Technology (2023); Changsha University of Science and Technology (2024); Zhejiang University (2014–2024); Columbia University (2020); Yangzhou University (2020); Shandong University of Science and Technology (2020–2023); Hainan Tropical Ocean University (2025); Xi'an Jiaotong University (2016–2025); Nanjing University (2020); Shaanxi Normal University (2009–2024); Wuhan Institute of Technology (2023–2025); University of Science and Technology Beijing (2025); Tsinghua University (2024)
Faculty Researcher
Upstream record may be merged OpenAlex, the source of these figures, lists 87 institutions in 9 countries for this author record — a pattern that usually means it combines several researchers with similar names. The totals above may include work by other people.
Research Areas
Biomedical Subjects
Links
Biography and Research Information
OverviewAI-generated summary
Wenjun Wang's research investigates the development and application of novel materials for diverse biomedical and environmental purposes. This includes work on ferritin nanoparticle-based vaccines, such as a SARS-CoV-2 RBD vaccine designed to elicit a persistent antibody response and long-term memory in mice. Other biomedical research includes the creation of injectable and biodegradable hydrogels incorporating photoregulated nitric oxide generators for wound healing, specifically targeting MRSA infections.
Beyond biomedical applications, Wang's work extends to materials science and environmental remediation. This encompasses the development of stretchable supercapacitors utilizing hierarchical electrodes and hybrid hydrogel electrolytes, designed for wide operating temperature ranges. Research also includes the creation of cyclodextrin-based metal-organic frameworks for delivery systems, photocatalytic materials for the removal of pollutants like bisphenol A from water, and the production of high-quality, wafer-scale cubic silicon carbide single crystals. Wang's scholarship metrics indicate a significant publication record, with an h-index of 35 and over 250 publications, accumulating more than 4,000 citations.
Metrics
- h-index: 35
- Publications: 248
- Citations: 4,067
Selected Publications
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High Electrical Conductivity and High Hardness in Cubic Silicon Carbide Single Crystals (2025)
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Enhancing Near‐Infrared Detection in Organic Phototransistors Using DBTTF‐TCNQ Cocrystal Engineering (2025)
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Leveraging Personalized PageRank and Higher-Order Topological Structures for Heterophily Mitigation in Graph Neural Networks (2025)
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In Situ Interface Reaction Enables Efficient Deep‐Blue Perovskite Light‐Emitting Diodes (2025)
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In Situ Interface Reaction Enables Efficient Deep‐Blue Perovskite Light‐Emitting Diodes (2025)
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A Compact Five-Band Omnidirectional RF Ambient Energy Harvesting System for IoT Applications (2025)
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Sera contributing to mycobacterial growth restriction in vitro display enhanced Fc-mediated phagocytosis (2025)
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A Wearable Dual-Band Magnetoelectric Dipole Rectenna for Radio Frequency Energy Harvesting (2025)
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“Hybrid bidirectional-gradient” phase change separator for battery all-temperature-range performance enhancement (2025)
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Ferritin-NP-preS1 vaccine synergizes with siRNA for sustained seroconversion against chronic hepatitis B in mice (2025)
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Modeling and Suppressing Interfacial Instability in Growth of SiC from High-Temperature Solutions (2025)
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Design and laser processing of laminated 3D network for high-performance electrodes of metal-ion batteries (2025)
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Inert Copper Incorporation Enables the High Activity and Durability of NiW Electrocatalyst for Alkaline Hydrogen Oxidation Reaction (2025)
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A bacterial type III effector hijacks plant ubiquitin proteases to evade degradation (2025)
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A Reinforcement Learning Approach for Graph Rule Learning (2024)
Collaboration Network
Top Collaborators
- Stretchable supercapacitor based on a hierarchical PPy/CNT electrode and hybrid hydrogel electrolyte with a wide operating temperature
- Highly Sensitive and Ultrafast Organic Phototransistor Based on Rubrene Single Crystals
- Organic photodetectors based on pentacene single crystals with fast response and flexibility
- The Optimization of Hole Injection Layer in Organic Light-Emitting Diodes
- Enhanced performance of OLED based on molecular orientation of emission layer by optimized substrate temperature
Showing 5 of 10 shared publications
- Organic photodetectors based on pentacene single crystals with fast response and flexibility
- The Optimization of Hole Injection Layer in Organic Light-Emitting Diodes
- Enhanced performance of OLED based on molecular orientation of emission layer by optimized substrate temperature
- Ultrafast and Stable Organic Single‐Crystal Vertical Phototransistor for Self‐Powered Photodetection and High‐Speed Imaging
- Flexible near-infrared polarized photodetector based on CuPc single crystal grown by microspacing in-air sublimation
Showing 5 of 9 shared publications
- Highly Sensitive and Ultrafast Organic Phototransistor Based on Rubrene Single Crystals
- Organic photodetectors based on pentacene single crystals with fast response and flexibility
- Enhanced performance of OLED based on molecular orientation of emission layer by optimized substrate temperature
- Ultrafast and Stable Organic Single‐Crystal Vertical Phototransistor for Self‐Powered Photodetection and High‐Speed Imaging
- Flexible near-infrared polarized photodetector based on CuPc single crystal grown by microspacing in-air sublimation
Showing 5 of 7 shared publications
- Highly Sensitive and Ultrafast Organic Phototransistor Based on Rubrene Single Crystals
- Organic photodetectors based on pentacene single crystals with fast response and flexibility
- Ultrafast and Stable Organic Single‐Crystal Vertical Phototransistor for Self‐Powered Photodetection and High‐Speed Imaging
- Flexible near-infrared polarized photodetector based on CuPc single crystal grown by microspacing in-air sublimation
- Gate Controlled Photocurrent Generation Mechanism in Air-Grown Organic Single Crystals for High-Speed Multiband Imaging
Showing 5 of 6 shared publications
- Highly Sensitive and Ultrafast Organic Phototransistor Based on Rubrene Single Crystals
- Organic photodetectors based on pentacene single crystals with fast response and flexibility
- Ultrafast and Stable Organic Single‐Crystal Vertical Phototransistor for Self‐Powered Photodetection and High‐Speed Imaging
- Flexible near-infrared polarized photodetector based on CuPc single crystal grown by microspacing in-air sublimation
- Gate Controlled Photocurrent Generation Mechanism in Air-Grown Organic Single Crystals for High-Speed Multiband Imaging
Showing 5 of 6 shared publications
- Interface engineering improves the performance of green perovskite light-emitting diodes
- Blue Halide Perovskite Materials: Preparation, Progress, and Challenges
- Dual-channel charge transfer-based thermally activated delayed fluorescence emitter facilitating efficient and low roll-off non-doped devices
- Manipulating Crystallization Dynamics for Efficient and Spectrally Stable Blue Perovskite Light‐Emitting Diodes
- In Situ Interface Reaction Enables Efficient Deep‐Blue Perovskite Light‐Emitting Diodes
Showing 5 of 6 shared publications
- Interface engineering improves the performance of green perovskite light-emitting diodes
- Blue Halide Perovskite Materials: Preparation, Progress, and Challenges
- Dual-channel charge transfer-based thermally activated delayed fluorescence emitter facilitating efficient and low roll-off non-doped devices
- Manipulating Crystallization Dynamics for Efficient and Spectrally Stable Blue Perovskite Light‐Emitting Diodes
- In Situ Interface Reaction Enables Efficient Deep‐Blue Perovskite Light‐Emitting Diodes
- Interface engineering improves the performance of green perovskite light-emitting diodes
- Blue Halide Perovskite Materials: Preparation, Progress, and Challenges
- Dual-channel charge transfer-based thermally activated delayed fluorescence emitter facilitating efficient and low roll-off non-doped devices
- Manipulating Crystallization Dynamics for Efficient and Spectrally Stable Blue Perovskite Light‐Emitting Diodes
- Management of Multi‐Energy‐Transfer Channels and Exciton Harvesting for Power‐Efficient White Thermally Activated Delayed Fluorescence Diodes
- High‐Quality and Wafer‐Scale Cubic Silicon Carbide Single Crystals
- Influence of interfacial energy on the growth of SiC single crystals from high temperature solutions
- Micropipe-Like Defects in the Expanded Diameter Region of 8 in. SiC Grown by Physical Vapor Transport
- Wafer-Scale p-Type SiC Single Crystals with High Crystalline Quality
- Modeling and Suppressing Interfacial Instability in Growth of SiC from High-Temperature Solutions
- Micropipe-Like Defects in the Expanded Diameter Region of 8 in. SiC Grown by Physical Vapor Transport
- Control of the temperature field by double induction coils for growth of large-sized SiC single crystals <i>via</i> the physical vapor transport technique
- Growth of hexagonal boron nitride crystals at atmospheric pressure from Cu Cr flux
- A study of nucleation at initial growth stage of SiC single crystal by physical vapor transport
- Stretchable supercapacitor based on a hierarchical PPy/CNT electrode and hybrid hydrogel electrolyte with a wide operating temperature
- An injectable and biodegradable hydrogel incorporated with photoregulated NO generators to heal MRSA-infected wounds
- The Optimization of Hole Injection Layer in Organic Light-Emitting Diodes
- Enhanced performance of OLED based on molecular orientation of emission layer by optimized substrate temperature
- Synthesis of porous N deficient graphitic carbon nitride and utilization in lithium-sulfur battery
- Pomelo peel-derived porous carbon as excellent LiPS anchor in lithium-sulfur batteries
- Accelerating electrochemical reactions in Li-S batteries through better dispersion of sulfur and the robust catalytic effect upon the vanadium nitride decorated hollow carbon spheres
- Synergistic effect in the ZIF67-derived core shell structure towards the improved electrochemical performances in lithium-sulfur batteries
- High‐Quality and Wafer‐Scale Cubic Silicon Carbide Single Crystals
- Influence of interfacial energy on the growth of SiC single crystals from high temperature solutions
- Wafer-Scale p-Type SiC Single Crystals with High Crystalline Quality
- Modeling and Suppressing Interfacial Instability in Growth of SiC from High-Temperature Solutions
- High‐Quality and Wafer‐Scale Cubic Silicon Carbide Single Crystals
- Influence of interfacial energy on the growth of SiC single crystals from high temperature solutions
- Wafer-Scale p-Type SiC Single Crystals with High Crystalline Quality
- Modeling and Suppressing Interfacial Instability in Growth of SiC from High-Temperature Solutions
- Dual phase change separator combining cooling and thermal shutdown functions for Li-ion battery with enhanced safety
- Dual phase change separator combining cooling and thermal shutdown functions for Li-ion battery with enhanced safety
- Magnetically triggered heat release from hydrate salt composite microchannels for low-temperature battery thermal management
- Magnetically triggered heat release from hydrate salt composite microchannels for low-temperature battery thermal management
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