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通过膜电化学蚀刻制备的聚合物石墨尖端的场发射特性

Field Emission Properties of Polymer Graphite Tips Prepared by Membrane Electrochemical Etching.

作者信息

Knápek Alexandr, Dallaev Rashid, Burda Daniel, Sobola Dinara, Allaham Mohammad M, Horáček Miroslav, Kaspar Pavel, Matějka Milan, Mousa Marwan S

机构信息

Institute of Scientific Instruments of the Czech Academy of Sciences, Královopolská 147, 612 64 Brno, Czech Republic.

Department of Physics, Faculty of Electrical Engineering and Communication, Brno University of Technology, Technická 2848/8, 616 00 Brno, Czech Republic.

出版信息

Nanomaterials (Basel). 2020 Jul 1;10(7):1294. doi: 10.3390/nano10071294.

Abstract

This paper investigates field emission behavior from the surface of a tip that was prepared from polymer graphite nanocomposites subjected to electrochemical etching. The essence of the tip preparation is to create a membrane of etchant over an electrode metal ring. The graphite rod acts here as an anode and immerses into the membrane filled with alkali etchant. After the etching process, the tip is cleaned and analyzed by Raman spectroscopy, investigating the chemical composition of the tip. The topography information is obtained using the Scanning Electron Microscopy and by Field Emission Microscopy. The evaluation and characterization of field emission behavior is performed at ultra-high vacuum conditions using the Field Emission Microscopy where both the field electron emission pattern projected on the screen and current-voltage characteristics are recorded. The latter is an essential tool that is used both for the imaging of the tip surfaces by electrons that are emitted toward the screen, as well as a tool for measuring current-voltage characteristics that are the input to test field emission orthodoxy.

摘要

本文研究了由经过电化学蚀刻的聚合物石墨纳米复合材料制备的尖端表面的场发射行为。尖端制备的关键在于在电极金属环上形成一层蚀刻剂膜。在此,石墨棒作为阳极,浸入充满碱性蚀刻剂的膜中。蚀刻过程完成后,对尖端进行清洗,并通过拉曼光谱分析,研究尖端的化学成分。使用扫描电子显微镜和场发射显微镜获取形貌信息。在场发射显微镜的超高真空条件下对场发射行为进行评估和表征,记录投射在屏幕上的场电子发射图案和电流-电压特性。后者是一种重要工具,既用于通过向屏幕发射的电子对尖端表面进行成像,也是用于测量电流-电压特性的工具,而电流-电压特性是测试场发射正统理论的输入参数。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ba7b/7407335/32e99a44c8ad/nanomaterials-10-01294-g001.jpg

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