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首页> 外文期刊>Colloids and Surfaces, A. Physicochemical and Engineering Aspects >Improved hydrophobicity of inorganic-organic hybrid mesoporous silica with cage-like pores
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Improved hydrophobicity of inorganic-organic hybrid mesoporous silica with cage-like pores

机译:具有笼状孔的无机-有机杂化介孔二氧化硅的疏水性得到改善

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摘要

Hydrophobic ordered mesoporous silica particles with cage-like pores (SBA-1 type) were prepared through co-condensation of phenyltriethoxysilane (PhTES) and tetraethylorthosilicate (TEOS) at different TEOS/PhTES molar ratios. It is shown that the hydrophobic character of the particles is enhanced by increasing the phenyl loading (decreasing the TEOS/PhTES molar ratio) and that it could be further enhanced by subsequent trimethylsilyl (TMS) grafting on remaining silanol groups (TMS-PhSBA-1 sample). This increase of hydrophobicity has been evidenced on the internal surface (mesoporosity) of the particles using water adsorption and, on the external surface of the particles (in the form of a pellet) using contact angle measurements. Interestingly, a high hysteresis was measured on the most hydrophobic sample (TMS-PhSBA-1), both on its internal surface during high pressure intrusion/extrusion of liquid water and on its external surface using advancing/receding contact angle measurements. This hydrophobic/hydrophilic behavior is explained by surface silanol sites, first shielded by hydrophobic organic moieties and, which subsequently trap water molecules within the porosity or on the external surface after a forced contact with liquid water. The absence of water extrusion (bumper behavior) of this material is then related both to the presence of silanol sites and to the restricted aperture of the cage-like pore morphology.
机译:通过以不同的TEOS / PhTES摩尔比将苯基三乙氧基硅烷(PhTES)和原硅酸四乙酯(TEOS)共缩合,制备了具有笼状孔的疏水有序介孔二氧化硅颗粒(SBA-1型)。结果表明,通过增加苯基负载量(降低TEOS / PhTES摩尔比)可以增强颗粒的疏水性,并且可以通过随后在剩余的硅烷醇基团上接枝三甲基甲硅烷基(TMS)来进一步增强颗粒的疏水性(TMS-PhSBA-1样品)。疏水性的这种增加已经通过使用水吸附在颗粒的内表面(中微孔性)上以及使用接触角测量在颗粒的外表面(以粒料的形式)上得到了证明。有趣的是,使用前进/后退接触角测量,在疏水性最高的样品(TMS-PhSBA-1)上,在高压注入/挤压液态水期间在其内表面上以及在其外表面上均检测到高滞后现象。这种疏水/亲水行为可以通过表面硅烷醇位点来解释,该表面硅烷醇位点首先被疏水性有机部分屏蔽,然后在与液态水强迫接触后将水分子捕获在孔隙内或外表面上。这种材料的不存在水挤出(保险杠行为)不仅与硅烷醇位点的存在有关,而且与笼状孔形态的孔径受限有关。

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