基本信息
林世权  男  硕导  中国科学院大学
电子邮件: linshiquan@ucas.ac.cn
通信地址: 北京市怀柔区杨雁东一路8号院
邮政编码:

招生信息

   
招生专业
070304-物理化学
招生方向
摩擦起电机理;摩擦发电机及理论

教育背景

2013-09--2018-07   清华大学   博士
2009-09--2013-07   北京科技大学   学士

工作经历

   
工作简历
2022-10~现在, 中国科学院大学, 副研究员
2020-10~2023-10,北京纳米能源与系统研究所, 副研究员
2018-07~2020-10,北京纳米能源与系统研究所, 博士后
2013-09~2018-07,清华大学, 博士
2009-09~2013-07,北京科技大学, 学士

出版信息

   
发表论文
(1) Electrostatic charges regulate chemiluminescence by electron transfer at the liquid-solid interface, Journal of Physical Chemistry B, 2022, 第 2 作者
(2) Triboelectric Nanogenerator as a Probe for Measuring the Charge Transfer between Liquid and Solid Surfaces, ACS NANO, 2021, 第 2 作者
(3) Detecting the Liquid-Solid Contact Electrification Charges in a Liquid Environment, JOURNAL OF PHYSICAL CHEMISTRY C, 2021, 第 1 作者
(4) Quantifying Contact-Electrification Induced Charge Transfer on a Liquid Droplet after Contacting with a Liquid or Solid, ADVANCED MATERIALS, 2021, 第 2 作者
(5) Photovoltaic effect and tribovoltaic effect at liquid-semiconductor interface, NANO ENERGY, 2021, 第 2 作者
(6) Effect of Photo-Excitation on Contact Electrification at Liquid-Solid Interface, ACS NANO, 2021, 第 5 作者
(7) Reversal of triboelectric charges on sol-gel oxide films annealed at different temperatures, APPLIED PHYSICS LETTERS, 2021, 第 2 作者
(8) Contact electrification at the liquid-solid interface, Chemical Reviews, 2021, 第 1 作者
(9) Effects of Temperature on the Tribovoltaic Effect at Liquid-Solid Interfaces, Advanced Materials Interfaces, 2021, 第 2 作者
(10) Scanning triboelectric nanogenerator as a nanoscale probe for measuring local surface charge density on a dielectric film, APPLIED PHYSICS LETTERS, 2021, 第 1 作者
(11) Effects of Oxygen Vacancies and Cation Valence States on the Triboelectric Property of Substoichiometric Oxide Films, ACS APPLIED MATERIALS & INTERFACES, 2021, 第 2 作者
(12) Effects of Surface Functional Groups on Electron Transfer at Liquid-Solid Interfacial Contact Electrification, ACS NANO, 2020, 第 1 作者
(13) Probing Contact-Electrification-Induced Electron and Ion Transfers at a Liquid-Solid Interface, ADVANCED MATERIALS, 2020, 第 4 作者
(14) Electron Transfer as a Liquid Droplet Contacting a Polymer Surface, ACS NANO, 2020, 第 4 作者
(15) Scanning Probing of the Tribovoltaic Effect at the Sliding Interface of Two Semiconductors, ADVANCED MATERIALS, 2020, 第 2 作者
(16) Charge Pumping Strategy for Rotation and Sliding Type Triboelectric Nanogenerators, ADVANCED ENERGY MATERIALS, 2020, 第 3 作者
(17) Effect of Redox Atmosphere on Contact Electrification of Polymers, ACS NANO, 2020, 第 2 作者
(18) The Overlapped Electron-Cloud Model for Electron Transfer in Contact Electrification, ADVANCED FUNCTIONAL MATERIALS, 2020, 第 1 作者
(19) The tribovoltaic effect and electron transfer at a liquid-semiconductor interface, NANO ENERGY, 2020, 第 1 作者
(20) Quantifying electron-transfer in liquid-solid contact electrification and the formation of electric double-layer, NATURE COMMUNICATIONS, 2020, 第 1 作者
(21) Contributions of Different Functional Groups to Contact Electrification of Polymers, ADVANCED MATERIALS, 2020, 第 7 作者
(22) Electron Transfer in Nanoscale Contact Electrification: Photon Excitation Effect, ADVANCED MATERIALS, 2019, 第 1 作者
(23) Electron transfer in nano-scale contact electrification: Atmosphere effect on the surface states of dielectrics, NANO ENERGY, 2019, 第 1 作者
(24) Environmental Energy Harvesting Adapting to Different Weather Conditions and Self-Powered Vapor Sensor Based on Humidity-Responsive Triboelectric Nanogenerators, ACSAPPLIEDMATERIALSINTERFACES, 2019, 第 6 作者
(25) Electron Transfer in Nanoscale Contact Electrification: Effect of Temperature in the Metal-Dielectric Case, ADVANCED MATERIALS, 2019, 第 1 作者
(26) Piezo-phototronic Effect Enhanced Photodetector Based on CH3NH3PbI3 Single Crystals, ACS NANO, 2018, 第 13 作者
(27) Bipolar charge transfer induced by water: experimental and first-principles studies, PHYSICAL CHEMISTRY CHEMICAL PHYSICS, 2017, 第 1 作者

科研活动

   
科研项目
( 1 ) 摩擦起电中的马赛克效应及其对摩擦发电机输出性能的影响, 负责人, 国家任务, 2021-01--2023-12
( 2 ) 低频水波能收集的基础与应用研究, 参与, 国家任务, 2021-12--2026-11