Electron Transfer in Nanoscale Contact Electrification: Photon Excitation Effect

接触带电 材料科学 热离子发射 电介质 原子物理学 摩擦电效应 激发 电子 光子能量 波长 光子 光电子学 光学 物理 量子力学 复合材料
作者
Shiquan Lin,Liang Xu,Laipan Zhu,Xiangyu Chen,Zhong Lin Wang
出处
期刊:Advanced Materials [Wiley]
卷期号:31 (27) 被引量:121
标识
DOI:10.1002/adma.201901418
摘要

Contact electrification (CE) (or triboelectrification) is a well-known phenomenon, and the identity of the charge carriers and their transfer mechanism have been discussed for decades. Recently, the species of transferred charges in the CE between a metal and a ceramic was revealed as electron transfer and its subsequent release is dominated by the thermionic emission process. Here, the release of CE-induced electrostatic charges on a dielectric surface under photon excitation is studied by varying the light intensity and wavelength, but under no significant raise in temperature. The results suggest that there exists a threshold photon energy for releasing the triboelectric charges from the surface, which is 4.1 eV (light wavelength at 300 nm) for SiO2 and 3.4 eV (light wavelength at 360 nm) for PVC; photons with energy smaller than this cannot effectively excite the surface electrostatic charges. This process is attributed to the photoelectron emission of the charges trapped in the surface states of the dielectric material. Further, a photoelectron emission model is proposed to describe light-induced charge decay on a dielectric surface. The findings provide an additional strong evidence about the electron transfer process in the CE between metals and dielectrics as well as polymers.

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