用 SLD 方法获得的 BC $${}_{\boldsymbol{x}}$ 薄膜表面电导率和形态的原子力显微镜可视化分析

IF 0.5 Q4 PHYSICS, MULTIDISCIPLINARY
P. V. Zinin, A. A. Bykov, R. I. Romanov, A. A. Korneeva, A. V. Andreev, A. Yu. Belykh, S. Yu. Krasnoborod’ko, V. A. Kukushkin
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引用次数: 0

摘要

摘要 具有非标准物理性质的材料被广泛应用于从微电子学到重工业装置等各个科学技术领域。曾几何时,国际科学团队进行的数学计算表明,最有前途的 B-C 结构化合物在一定的外部条件和浓度比例下,具有很强的化学键 sp\({}^{2}\) 和 sp\({}^{3}\) 。这种材料具有高硬度、耐侵蚀性介质和导电性等特点。这项工作旨在合成和研究含碳 BC\({}_{x}\) 薄膜。本文介绍了测量 BC\({}_{5}\) 薄膜的结果。通过使用 X 射线、拉曼和光电子能谱获得了薄膜的光谱特性、层厚度数据、电导率和成分。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

AFM Visualization of Conductivity and Morphology of BC $${}_{\boldsymbol{x}}$$ -Film Surface Obtained by SLD Method

AFM Visualization of Conductivity and Morphology of BC $${}_{\boldsymbol{x}}$$ -Film Surface Obtained by SLD Method

Abstract

Materials with nonstandard physical properties are widely used in various fields of science and technology, from microelectronics to heavy industrial installations. At one time, international scientific teams carried out mathematical calculations showing that the most promising compounds of B–C structures which, under certain external conditions and concentration ratios, have strong chemical sp\({}^{2}\) and sp\({}^{3}\) bonds. Such materials are characterized by high hardness, resistance to aggressive media, and conductivity. This work is aimed at the synthesis and study of carbon-containing BC\({}_{x}\) films. This paper presents the results of measuring a thin BC\({}_{5}\) film. The spectral characteristics of the film, data on its layer thickness, conductivity, and composition were obtained by using X-ray, Raman, and photoelectron spectroscopy.

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来源期刊
CiteScore
1.00
自引率
50.00%
发文量
16
期刊介绍: The scope of Optoelectronics, Instrumentation and Data Processing encompasses, but is not restricted to, the following areas: analysis and synthesis of signals and images; artificial intelligence methods; automated measurement systems; physicotechnical foundations of micro- and optoelectronics; optical information technologies; systems and components; modelling in physicotechnical research; laser physics applications; computer networks and data transmission systems. The journal publishes original papers, reviews, and short communications in order to provide the widest possible coverage of latest research and development in its chosen field.
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