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通过拟晶途径制备并接枝十八烷基链的MCM-41二氧化硅球的物理化学表征

Physico-chemical characterization of MCM-41 silica spheres made by the pseudomorphic route and grafted with octadecyl chains.

作者信息

Kailasam Kamalakannan, Müller Klaus

机构信息

Institut für Physikalische Chemie, Universität Stuttgart, Pfaffenwaldring 55, D-70569 Stuttgart, Germany.

出版信息

J Chromatogr A. 2008 May 16;1191(1-2):125-35. doi: 10.1016/j.chroma.2008.02.026. Epub 2008 Feb 13.

Abstract

This work reports on the first comprehensive characterization of octadecyl (C(18)) modified MCM-41 silica spheres, prepared via the pseudomorphic route, followed by grafting with mono- or trifunctional octadecyl (C(18)) alkyl chains and endcapping with hexamethyldisilazane. Small angle X-ray scattering (SAXS), nitrogen adsorption-desorption and scanning electron microscopy (SEM) measurements were performed to obtain information about the MCM-41 pore structure, surface properties and morphological features. The degree of grafting and cross-linking of the silanes were determined by (29)Si magic angle spinning NMR spectroscopy, while FTIR and (13)C NMR were employed to study the conformational behavior of the surface-immobilized alkyl chains. The SAXS pattern proved the existence of a hexagonal mesopore arrangement for both the ungrafted and the grafted MCM-41 silica spheres. In addition, there is evidence of some long-range distortion in the pore structure. SEM measurements revealed the same morphological features for the parent silica and the MCM-41 silica spheres before and after C(18) grafting. The achieved surface loading for the MCM-41 material is rather low. It was also shown that a substantial amount of the accessible surface silanol groups is endcapped by trimethylsilane which in turn results in a very low surface coverage due to the octadecyl chains. The nitrogen sorption studies provided values for the surface area, total pore volume and pore diameter which are very typical for mesoporous materials. The reduction in surface area and total pore volume upon surface grafting is related to the binding of trimethylsilane in the interior of the pores, while due to the spatial restrictions octadecyl chains are primarily attached near the pore entrance. The experimental FTIR and (13)C NMR data point to a very low conformational order of the C(18) chains which is in accordance with the observed low surface coverage and the resulting spatial freedom for these surface-immobilized alkyl chains.

摘要

本工作报道了通过拟晶路线制备的十八烷基(C(18))修饰的MCM-41二氧化硅球的首次全面表征,随后用单官能或三官能十八烷基(C(18))烷基链接枝并用六甲基二硅氮烷封端。进行了小角X射线散射(SAXS)、氮吸附-脱附和扫描电子显微镜(SEM)测量,以获取有关MCM-41孔结构、表面性质和形态特征的信息。通过(29)Si魔角旋转核磁共振光谱确定硅烷的接枝和交联程度,同时采用傅里叶变换红外光谱(FTIR)和(13)C核磁共振研究表面固定烷基链的构象行为。SAXS图谱证明了未接枝和接枝的MCM-41二氧化硅球均存在六方介孔排列。此外,有证据表明孔结构存在一些长程畸变。SEM测量揭示了母体二氧化硅以及C(18)接枝前后的MCM-41二氧化硅球具有相同的形态特征。MCM-41材料实现的表面负载相当低。还表明大量可及的表面硅醇基团被三甲基硅烷封端,这反过来由于十八烷基链导致非常低的表面覆盖率。氮吸附研究提供了介孔材料非常典型的表面积、总孔体积和孔径值。表面接枝后表面积和总孔体积的减小与三甲基硅烷在孔内部的结合有关,而由于空间限制,十八烷基链主要附着在孔入口附近。实验性的FTIR和(13)C NMR数据表明C(18)链的构象有序度非常低,这与观察到的低表面覆盖率以及这些表面固定烷基链产生的空间自由度一致。

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