The Chemical and Morphological Properties of Boron–Carbon Alloys Grown by Plasma-Enhanced Chemical Vapour Deposition

被引:0
作者
D. Zhang
D. N. Mcilroy
W. L. O'Brien
G. De Stasio
机构
[1] University of Idaho,Department of Physics, Engineering and Physics Building,
[2] ,Synchrotron Radiation Center,
[3] University of Wisconsin-Madison,undefined
[4] ,undefined
[5] Institut de Physique Appliquée,undefined
[6] Ecole Polytechnique Fédéerale,undefined
[7] CH-1015 Lausanne,undefined
[8] Switzerland and Istituto di Struttura della Materia del CNR,undefined
[9] ,undefined
来源
Journal of Materials Science | 1998年 / 33卷
关键词
Polymer; Thin Film; Boron; Absorption Spectrum; Relative Intensity;
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中图分类号
学科分类号
摘要
The stoichiometry and morphology of boron–carbon alloy thin films grown by plasma-enhanced chemical vapour deposition can be significantly modified by varying the deposition rate. Films grown at a rate of 5.5 nm min−1 are characterized by an amorphous-like matrix with carbon-rich and dome-like inclusions. Films grown at a deposition rate of 33 nm min−1 are found to be much more homogeneous and free of carbon-rich and dome-like inclusions. An excitation at 191.7 eV in the B 1s absorption spectrum has been associated with amorphous growth. The relative intensities of the π* and σ* excitations across the C 1s absorption edge of these boron-carbon alloys indicate that carbon bonding is predominantly through sp3 hybridization, while boron bonding is a mix of sp2 and sp3 hybridization.
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页码:4911 / 4915
页数:4
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