Field emission device driven by self-powered contact-electrification: Simulation and experimental analysis

Xiangyu Chen, Tao Jiang, Zhuo Sun, Wei Ou-Yang

Research output: Contribution to journalArticlepeer-review

31 Scopus citations

Abstract

A self-powered field emission device (FED) driven by a single-electrode tribo-electric nanogenerator (TENG) is demonstrated. The mechanical motion works as both a power supply to drive the FED and a control unit to regulate the amount of emitted electrons. By using the Fowler-Nordheim equation and Kirchhoff laws, a theoretical model of this self-powered FED is proposed, and accordingly the real-time output characteristics of the device are systematically investigated. It is found that the motion distance of the TENG controls switch-on of the FED and determines the charge amount for emission, while the motion velocity regulates the amplitude of emission current. The minimum contact area for the TENG to generate field emission is about 9cm2, which can be improved by optimizing FED structure and the tribo-materials of TENG. The demonstrated concept of this self-powered FED as well as the proposed physical analysis can serve as guidance for further applications of FED in such fields of self-powered electronics and soft electronics.

Original languageEnglish
Article number114103
JournalApplied Physics Letters
Volume107
Issue number11
DOIs
StatePublished - 14 Sep 2015

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