接触带电
材料科学
摩擦电效应
沉积(地质)
化学物理
电荷(物理)
高定向热解石墨
热解炭
石墨
量子隧道
纳米技术
载流子
光电子学
复合材料
化学工程
古生物学
物理
量子力学
沉积物
生物
工程类
热解
作者
Zipei Tan,Xuanyu Huang,Jinbo Bian,Jinhui Nie,Quanshui Zheng,Zhiping Xu
标识
DOI:10.1021/acsami.4c22073
摘要
Electrical charge deposition modulates carrier mobility in electronic devices and governs interfacial processes such as frictional energy dissipation and triboelectric power generation. Selective charge deposition on 2D materials enables logic and memory functions, but controlling charge transfer and trapping remains a challenge. Here, we report an unconventional contact electrification mechanism activated at a sliding structural superlubric interface between highly ordered pyrolytic graphite and h-BN. Spatially controlled charge deposition is achieved through mechanical manipulation at the sliding front in a reversible way, while face-to-face contact remains intact even under pressures exceeding the strength of most materials. First-principles calculations reveal that edge contact facilitates electron transfer, with charge deposition driven by a chemical potential difference across the graphite/h-BN interface and stabilized by surface adsorbates.
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