首页> 外文期刊>Journal of nanoparticle research: An interdisciplinary forum for nanoscale science and technology >Effects of various methylchlorosilanes on physicochemical properties of ambient pressure dried silica aerogels
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Effects of various methylchlorosilanes on physicochemical properties of ambient pressure dried silica aerogels

机译:各种甲基氯硅烷对环境压力干硅气凝胶物理化学性能的影响

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摘要

Methylchlorosilanes (MSCs) of the type (CH3)(n)SiCl4-n (n = 1, 2, 3) are usually used for surface modification of silica aerogels (SAs), in which the quantity of Si-Cl and Si-CH3 groups deeply affects the properties of prepared SAs. In this work, methyltrichlorosilane (MTCS, n = 1), dimethyldichlorosilane (DMDCS, n = 2), and trimethylchlorosilane (TMCS, n = 3) were used to modify wet gels and the effects of Si-Cl and Si-CH3 groups' quantity on microstructures and surface properties were explored in detail. It turned out that the MTCS modified SA (MSA) possessed the most compact and nonuniform three-dimensional nanostructure among the three SAs, accompanied by the biggest density of 0.14 g/cm(3). Further investigations demonstrated that all the three SAs had similar BET surface area of about 900 m(2)/g and average pore size of 10-15 nm. Though FTIR analysis presented the discrepancies obviously among the three SAs, the thermal stability of the three SAs was similar, with the onset and peak temperatures in the exothermic reaction of methyl groups being 240 degrees C and 270 degrees C, respectively. The best hydrophobicity belonged to the TSA, verified by the biggest contact angles of 155 degrees. Thus, all these indicated that the properties of the three SAs were deeply related to the quantity of Si-Cl and Si-CH3 groups in MCS.
机译:(CH3)(N)SiCl4-N(n = 1,2,3)的甲基氯硅烷(MSCs)通常用于硅气凝胶(SAS)的表面改性,其中Si-Cl和Si-Ch3的量群体深深影响准备好的SA的性质。在该工作中,使用甲基三氯硅烷(MTC,N = 1),二甲基二氯硅烷(DMDC,N = 2)和三甲基氯硅烷(TMC,N = 3)来改变湿凝胶和Si-Cl和Si-CH3组的作用详细探讨了微观结构和表面性质的数量。事实证明,MTCS改性SA(MSA)具有三种SAS中最紧凑和不均匀的三维纳米结构,伴随着0.14g / cm(3)的最大密度。进一步的调查证明,所有三种SAS相似的BET表面积约为900米(2)/ g和10-15nm的平均孔径。虽然FTIR分析在三种SAS中显然呈现了差异,但是三种SA的热稳定性相似,并且在甲基的放热反应中的发病和峰值温度分别为240℃和270℃。最佳疏水性属于TSA,通过155度的最大接触角验证。因此,所有这些都表明三种SAS的性质与MCS中的Si-Cl和Si-CH3组的量深入相关。

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