化学气相沉积
沉积(地质)
化学工程
基质(水族馆)
热扩散率
材料科学
多孔性
立方氧化锆
陶瓷
化学
无机化学
复合材料
纳米技术
热力学
工程类
沉积物
生物
古生物学
海洋学
物理
地质学
作者
Y. S. Lin,A.J. Burggraaf
出处
期刊:Aiche Journal
[Wiley]
日期:1992-03-01
卷期号:38 (3): 445-454
被引量:73
标识
DOI:10.1002/aic.690380313
摘要
Abstract The deposition of yttria‐doped zirconia has been experimented systematically in various types of porous ceramic substrates by a modified chemical vapor deposition (CVD) process operating in an opposing reactant geometry using water vapor and corresponding metal chloride vapors as reactants. The effects of substrate pore dimension and structure, bulk‐phase reactant concentration, reactant diffusivity in substrate pores and deposition temperature are experimentally studied and explained qualitatively by a theoretical modeling analysis. The experimental and theoretical results suggest a reaction mechanism which depends on water vapor and chloride vapor concentrations. Consequently, the diffusivity, bulk‐phase reactant concentration, and substrate pore dimension are important in the CVD process. Effects of deposition temperature on the deposition results and narrow deposition zone compared to the substrate thickness also suggest a Langmuir‐Hinshelwood reaction mechanism involved in the CVD process with a very fast CVD reaction rate. Gas permeation data indicate that whether deposition of solid in substrate pores could result in the pore‐size reduction depends strongly on the initial pore‐size distribution of the substrate.
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