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采用端羟基聚二甲基硅氧烷反应性超临界沉积制备二氧化硅气凝胶整体复合材料。

Monolithic composites of silica aerogels by reactive supercritical deposition of hydroxy-terminated poly(dimethylsiloxane).

机构信息

Department of Chemical and Biological Engineering, Koç University , 34450 Sariyer, Istanbul, Turkey.

出版信息

ACS Appl Mater Interfaces. 2013 Nov 27;5(22):11708-17. doi: 10.1021/am403200d. Epub 2013 Nov 12.

Abstract

Monolithic composites of silica aerogels with hydroxyl-terminated poly(dimethylsiloxane) (PDMS(OH)) were developed with a novel reactive supercritical deposition technique. The method involves dissolution of PDMS(OH) in supercritical CO2 (scCO2) and then exposure of the aerogel samples to this single phase mixture of PDMS(OH)-CO2. The demixing pressures of the PDMS(OH)-CO2 binary mixtures determined in this study indicated that PDMS(OH) forms miscible mixtures with CO2 at a wide composition range at easily accessible pressures. Upon supercritical deposition, the polymer molecules were discovered to react with the hydroxyl groups on the silica aerogel surface and form a conformal coating on the surface. The chemical attachment of the polymer molecules on the aerogel surface were verified by prolonged extraction with pure scCO2, simultaneous deposition with superhydrophobic and hydrophilic silica aerogel samples and ATR-FTIR analysis. All of the deposited silica aerogel samples were obtained as monoliths and retained their transparency up to around 30 wt % of mass uptake. PDMS(OH) molecules were found to penetrate all the way to the center of the monoliths and were distributed homogenously throughout the cylindrical aerogel samples. Polymer loadings as high as 75.4 wt % of the aerogel mass could be attained. It was shown that the polymer uptake increases with increasing exposure time, as well as the initial polymer concentration in the vessel.

摘要

采用新型反应性超临界沉积技术制备了具有端羟基聚二甲基硅氧烷(PDMS(OH))的二氧化硅气凝胶整体复合材料。该方法包括将 PDMS(OH)溶解在超临界 CO2(scCO2)中,然后将气凝胶样品暴露于 PDMS(OH)-CO2单相混合物中。本研究中确定的 PDMS(OH)-CO2 二元混合物的分相压力表明,PDMS(OH)在易于达到的压力下,在很宽的组成范围内形成与 CO2 混溶的混合物。在超临界沉积过程中,发现聚合物分子与二氧化硅气凝胶表面的羟基反应,并在表面形成一层保形涂层。通过用纯 scCO2 进行长时间萃取、同时对超疏水和亲水二氧化硅气凝胶样品进行沉积以及 ATR-FTIR 分析,验证了聚合物分子在气凝胶表面的化学附着。所有沉积的二氧化硅气凝胶样品均作为整体获得,并且保留其透明度,直至质量吸收量达到约 30wt%。发现 PDMS(OH)分子一直渗透到整体的中心,并均匀分布在圆柱形气凝胶样品中。可以达到高达 75.4wt%的气凝胶质量的聚合物负载量。结果表明,聚合物的吸收量随暴露时间的增加以及容器中初始聚合物浓度的增加而增加。

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