Jia Wen

ORCID: 0000-0003-1970-5329
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About
Contact & Profiles
Research Areas
  • Adsorption and biosorption for pollutant removal
  • Radio Frequency Integrated Circuit Design
  • Heavy metals in environment
  • Advancements in PLL and VCO Technologies
  • Analog and Mixed-Signal Circuit Design
  • Nanomaterials for catalytic reactions
  • Metal-Organic Frameworks: Synthesis and Applications
  • Arsenic contamination and mitigation
  • Chromium effects and bioremediation
  • Environmental remediation with nanomaterials
  • Advancements in Battery Materials
  • Advanced Battery Technologies Research
  • Wastewater Treatment and Nitrogen Removal
  • Semiconductor materials and devices
  • Microbial bioremediation and biosurfactants
  • Constructed Wetlands for Wastewater Treatment
  • Low-power high-performance VLSI design
  • Microwave Engineering and Waveguides
  • Advanced Power Amplifier Design
  • Plant Stress Responses and Tolerance
  • Geochemistry and Elemental Analysis
  • Environmental Toxicology and Ecotoxicology
  • Microbial Community Ecology and Physiology
  • Neuroscience and Neural Engineering
  • Electromagnetic Compatibility and Noise Suppression

Hunan University
2015-2024

Tsinghua University
2013-2024

Chongqing University
2023-2024

Chinese National Engineering Research Center for Control and Treatment of Heavy Metal Pollution
2024

Yunnan University
2023

Southwest University
2023

Lanzhou University of Technology
2022

Xiamen University
2022

Beijing Tsinghua Chang Gung Hospital
2022

State Key Laboratory of Pollution Control and Resource Reuse
2018-2021

In recent years, heavy metals and organic pollutants have become two major obstacles to maintaining the ecological environment. Thus, choosing efficient environmentally friendly methods materials remediate pollution has a hot research topic. Porous metal–organic frameworks (MOFs) their composites or derivatives can be used as ideal adsorbents catalytic because of unique structures functions. This work reviews progress on MOF-based in remediation water environment past decade. The discussed...

10.3390/su15086686 article EN Sustainability 2023-04-14

Colloidal quantum dots (CQDs) are of great interest for photovoltaic (PV) technologies as they possess the benefits solution-processability, size-tunability, and roll-to-roll manufacturability, well unique capabilities to harvest near-infrared (NIR) radiation. During last decade, lab-scale CQD solar cells have achieved rapid improvement in power conversion efficiency (PCE) from ∼1% 18%, which will potentially exceed 20% next few years approach performance other PV technologies, such...

10.1016/j.jnlest.2023.100189 article EN cc-by-nc-nd Journal of Electronic Science and Technology 2023-02-28
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