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One-Dimension Diffusion Preparation of Concentration-Gradient Fe2O3/SiO2 Aerogel

机译:浓度梯度Fe2O3 / SiO2气凝胶的一维扩散制备

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摘要

Concentration-gradient Fe2O3/SiO2 aerogels were prepared by placing an MTMS (methyltrimethoxysilane)-derived SiO2 aerogel on an iron gauze with an HCl atmosphere via one-dimensional diffusion, ammonia-atmosphere fixing, supercritical fluid drying and thermal treatment. The energy dispersive spectra show that the Fe/Si molar ratios change gradually from 2.14% to 18.48% with a height of 40 mm. Pore-size distribution results show that the average pore size of the sample decreases from 15.8 nm to 3.1 nm after diffusion. This corresponds well with TEM results, indicating a pore-filling effect of the Fe compound. In order to precisely control the gradient, diffusion kinetics are further studied by analyzing the influence of time and position on the concentration of the wet gel. At last, it is found that the diffusion process could be fitted well with the one-dimensional model of Fick’s second law, demonstrating the feasibility of the precise design and control of the concentration gradient.
机译:通过一维扩散,氨气固定,超临界流体干燥和热处理,将源自MTMS(甲基三甲氧基硅烷)的SiO2气凝胶放在HCl气氛的铁网上,制备浓度梯度的Fe2O3 / SiO2气凝胶。能量色散谱表明,Fe / Si摩尔比在高度为40 mm时从2.14%逐渐变化为18.48%。孔径分布结果表明,扩散后样品的平均孔径从15.8 nm减小到3.1 nm。这与TEM结果非常吻合,表明Fe化合物的孔填充作用。为了精确控制梯度,通过分析时间和位置对湿凝胶浓度的影响来进一步研究扩散动力学。最后,发现扩散过程可以与菲克第二定律的一维模型很好地吻合,证明了精确设计和控制浓度梯度的可行性。

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