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首页> 外文期刊>Journal of the European Ceramic Society >Thermodynamic analysis on deposition of Si-B-C-N ceramic by low pressure chemical vapor deposition/infiltration from SiCH3Cl3-BCl3-NH3-H-2-Ar system
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Thermodynamic analysis on deposition of Si-B-C-N ceramic by low pressure chemical vapor deposition/infiltration from SiCH3Cl3-BCl3-NH3-H-2-Ar system

机译:Si-B-C-N陶瓷通过低压化学气相沉积/渗透SICH3CL3-BCL3-NH3-H-2-AR系统的热力学分析

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摘要

In order to guide the kinetic deposition experiments of siliconboron carbonitride ceramics (Si-B-C-N) from SiCl3CH3-NH3-BCl3-H-2-Ar system, the thermodynamic calculation was undertaken using Fact sage software. Predominant condensed phases at equilibrium were SiC, Si3N4, BN, B4C and C. The area of phase regions was affected by deposition parameters, such as temperature, total pressure, dilute H-2 ratio, n(CH3SiCl3)/(n(NH3) + n(BCl3)) and nNH(3)/(n(NH3) + n(BCl3)). The results showed that Si-B-C-N ceramics with desired phases, such as C+SiC+BN, could be obtained via this system by controlling above parameters theoretically. Kinetic verification at 900 degrees C demonstrated that Si-B-C-N ceramic could be obtained by low pressure chemical vapor deposition/infiltration from this system. The deposition was amorphous from XRD spectra and mainly constituted by C-C, Si-N and Si-C bonds from XPS analysis, which was in agreement with the results of thermodynamic calculation in general. (C) 2016 Elsevier Ltd. All rights reserved.
机译:为了引导SiCl 3-NH3-BCL3-H-2-AR系统的硅硼碳碳氮化陶瓷陶瓷(Si-B-C-N)的动力学沉积实验,使用事实Sage软件进行热力学计算。平衡的主要凝结相是SiC,Si3N4,BN,B4C和C.相位区域的面积受沉积参数的影响,例如温度,总压,稀释的H-2比,N(CH 3 SICL3)/(N(NH3) + N(BCl3))和NNH(3)/(N(NH 3)+ N(BCL3))。结果表明,通过理论上通过该系统通过该系统可以通过该系统获得具有所需阶段的Si-B-C-N陶瓷,例如C + SiC + BN。 900摄氏度的动力学验证证明了Si-B-C-N陶瓷可以通过来自该系统的低压化学气相沉积/渗透来获得。沉积是来自XRD光谱的无定形,主要由来自XPS分析的C-C,Si-N和Si-C键构成,这与一般热力学计算的结果一致。 (c)2016 Elsevier Ltd.保留所有权利。

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