材料科学
分析化学(期刊)
三元运算
无定形固体
纳米晶材料
范德堡法
纳米复合材料
溅射沉积
晶界
电阻率和电导率
无定形碳
薄膜
微观结构
溅射
结晶学
冶金
纳米技术
化学
霍尔效应
工程类
色谱法
计算机科学
电气工程
程序设计语言
作者
M.D. Abad,R. Sanjinés,J.L. Endrino,R. Gago,Joakim Andersson,J.C. Sánchez-López
标识
DOI:10.1002/ppap.201000182
摘要
Abstract The local structure of TiBC and amorphous carbon (a‐C) nanocomposite films (TiBC/a‐C) was correlated with their optical and electrical properties. TiBC/a‐C films with increasing C content were deposited by magnetron co‐sputtering from TiC:TiB 2 (60:40) and graphite targets. Chemical composition is determined by electron energy‐loss spectroscopy. Grazing incidence X‐ray diffraction reveals that the microstructure of the films is amorphous with small nanocrystallites emerging by increasing the C content that could be attributed to the formation of ternary (TiB x C y ) or mixed binary (TiB 2 and TiC) phases. Further information was then obtained by studying the chemical bonding by measuring the near‐edge fine structure (NES) by electron energy‐loss (B K ‐, C K ‐, and Ti L ‐edges) and X‐ray absorption (B K ‐ and Ti L ‐edges) spectroscopies. The NES analysis indicates the formation of a nanocrystalline ternary TiB x C y compound concomitant with the segregation of an a‐C phase as the carbon content is increased. The optical properties were studied by spectroscopic ellipsometry and the electrical resistivity was measured by the Van der Pauw method between 20 and 300 K. The films continuously lose their metallic character in terms of optical constants and resistivity with increasing carbon content. Theoretical fitting of the electrical properties using the grain‐boundary scattering model supported the formation of a nanocomposite structure based on a ternary TiB x C y phase embedded in a matrix of a‐C. The electron transport properties are mainly limited by the high density of point defects, grain size, and transmission probability. magnified image
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