World's Best Scientists 2026 revealed!

D-Index & Metrics

Engineering and Technology

D-Index
74
Citations
18712
World Ranking
824
National Ranking
145

Overview

Xiangyu Chen is affiliated with the Chinese Academy of Sciences in China. Their research spans broadly within engineering and materials science, with a particular focus on subfields such as biomedical engineering, electrical and electronic engineering, polymers and plastics, materials chemistry, and renewable energy, sustainability, and the environment.

Their scholarly contributions emphasize several main topics, including advanced sensor and energy harvesting materials, conducting polymers and their applications, supercapacitor materials and fabrication, tactile and sensory interactions, advanced photocatalysis techniques, perovskite materials and applications, and dielectric materials and actuators.

Chen has published extensively in a range of notable scientific venues. Frequent publication outlets include:

  • Nano Energy
  • SSRN Electronic Journal
  • Advanced Functional Materials
  • arXiv (Cornell University)
  • ACS Nano

Among recent representative publications are:

  • Contact Electrification at the Liquid-Solid Interface, 2021, Chemical Reviews
  • Recent Advances in Triboelectric Nanogenerators: From Technological Progress to Commercial Applications, 2023, ACS Nano
  • Contributions of Different Functional Groups to Contact Electrification of Polymers, 2020, Advanced Materials
  • Engineering polyphenols with biological functions via polyphenol-protein interactions as additives for functional foods, 2021, Trends in Food Science & Technology
  • Electron Transfer as a Liquid Droplet Contacting a Polymer Surface, 2020, ACS Nano

Chen has collaborated frequently with several researchers. Their common coauthors include:

  • Zhong Lin Wang (46 collaborations)
  • Xinglin Tao (38 collaborations)
  • Zhaoqi Liu (33 collaborations)
  • Yuxiang Shi (29 collaborations)
  • Shuyao Li (24 collaborations)

The research profile of Xiangyu Chen reflects an interdisciplinary approach, integrating material sciences with engineering applications aimed at energy harvesting, sensor technologies, and the development of functional polymers. Their work often explores the fundamental mechanisms of contact electrification and electron transfer phenomena, as well as the enhancement of materials used in renewable energy systems and advanced functional foods.

Best Publications

  • Ultrastretchable, transparent triboelectric nanogenerator as electronic skin for biomechanical energy harvesting and tactile sensing

    Xiong Pu;Mengmeng Liu;Xiangyu Chen;Jiangman Sun

  • Combating Noisy Labels by Agreement: A Joint Training Method with Co-Regularization

    Hongxin Wei;Lei Feng;Xiangyu Chen;Bo An

  • Theory of freestanding triboelectric-layer-based nanogenerators

    Simiao Niu;Ying Liu;Xiangyu Chen;Sihong Wang

  • Probing Contact-Electrification-Induced Electron and Ion Transfers at a Liquid-Solid Interface.

    Jinhui Nie;Zewei Ren;Liang Xu;Shiquan Lin

  • Recent Advances in Triboelectric Nanogenerators: From Technological Progress to Commercial Applications.

    Unknown

  • Contact Electrification at the Liquid-Solid Interface.

    Shiquan Lin;Xiangyu Chen;Zhong Lin Wang;Zhong Lin Wang

  • Contributions of Different Functional Groups to Contact Electrification of Polymers

    Shuyao Li;Jinhui Nie;Yuxiang Shi;Xinglin Tao

  • Coupled Triboelectric Nanogenerator Networks for Efficient Water Wave Energy Harvesting

    Liang Xu;Tao Jiang;Pei Lin;Jia Jia Shao

  • Manipulating the triboelectric surface charge density of polymers by low-energy helium ion irradiation/implantation

    Shuyao Li;Shuyao Li;Yong Fan;Huaqiang Chen;Jinhui Nie

  • Power generation from the interaction of a liquid droplet and a liquid membrane.

    Jinhui Nie;Ziming Wang;Zewei Ren;Shuyao Li

  • Electron Transfer in Nanoscale Contact Electrification: Effect of Temperature in the Metal-Dielectric Case.

    Shiquan Lin;Liang Xu;Cheng Xu;Xiangyu Chen

  • Enhanced Triboelectric Nanogenerators Based on MoS2 Monolayer Nanocomposites Acting as Electron-Acceptor Layers

    Chaoxing Wu;Tae Whan Kim;Jae Hyeon Park;Haoqun An

  • Electron Transfer as a Liquid Droplet Contacting a Polymer Surface.

    Fei Zhan;Aurelia C Wang;Liang Xu;Shiquan Lin

  • Monitoring the Degree of Comfort of Shoes In-Motion Using Triboelectric Pressure Sensors with an Ultrawide Detection Range.

    Unknown

  • Fabrication of triboelectric polymer films via repeated rheological forging for ultrahigh surface charge density

    Unknown

  • Sustainable high-voltage source based on triboelectric nanogenerator with a charge accumulation strategy

    Rui Lei;Rui Lei;Yuxiang Shi;Yafei Ding;Jinhui Nie

  • Three-dimensional ultraflexible triboelectric nanogenerator made by 3D printing

    Baodong Chen;Wei Tang;Tao Jiang;Laipan Zhu

  • Self-powered electro-tactile system for virtual tactile experiences

    Yuxiang Shi;Fan Wang;Jingwen Tian;Shuyao Li

  • Self-Healing and Elastic Triboelectric Nanogenerators for Muscle Motion Monitoring and Photothermal Treatment.

    Dan Yang;Dan Yang;Dan Yang;Yufeng Ni;Xinxin Kong;Shuyao Li

  • Structural Optimization of Triboelectric Nanogenerator for Harvesting Water Wave Energy.

    Tao Jiang;Li Min Zhang;Xiangyu Chen;Chang Bao Han

  • Theoretical Study of Rotary Freestanding Triboelectric Nanogenerators

    Tao Jiang;Xiangyu Chen;Chang Bao Han;Wei Tang

  • Self-Powered Microfluidic Transport System Based on Triboelectric Nanogenerator and Electrowetting Technique

    Jinhui Nie;Zewei Ren;Jiajia Shao;Chaoran Deng

  • Self-Powered Electrostatic Filter with Enhanced Photocatalytic Degradation of Formaldehyde Based on Built-in Triboelectric Nanogenerators.

    Yawei Feng;Lili Ling;Jinhui Nie;Kai Han

  • Integrated triboelectric nanogenerator array based on air-driven membrane structures for water wave energy harvesting

    Liang Xu;Yaokun Pang;Chi Zhang;Tao Jiang

  • Electrically Responsive Materials and Devices Directly Driven by the High Voltage of Triboelectric Nanogenerators

    Jinhui Nie;Xiangyu Chen;Xiangyu Chen;Zhong Lin Wang

Frequent Co-Authors

Zhong Lin Wang
Zhong Lin Wang Georgia Institute of Technology
Mitsumasa Iwamoto
Mitsumasa Iwamoto Tokyo Institute of Technology
Liang Xu
Liang Xu Chinese Academy of Sciences
Tao Jiang
Tao Jiang Chinese Academy of Sciences
Wei Tang
Wei Tang Chinese Academy of Sciences
Hexing Li
Hexing Li Shanghai Normal University
Chang Bao Han
Chang Bao Han Beijing University of Technology
Tie Wang
Tie Wang Chinese Academy of Sciences
Hengyu Guo
Hengyu Guo Chongqing University
Junyi Zhai
Junyi Zhai Chinese Academy of Sciences

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