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Functionalization of arrays of silica nanochannels by post-condensation

机译:通过后缩合实现二氧化硅纳米通道阵列的功能化

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摘要

Functionalized arrays of silica nanochannels (ASNCs) were prepared by post-condensation of amino-functional alkoxysilanes (NH-silanes). The method of post-condensation combines postsynthetic grafting and co-condensation - the classical pathways for the functionalization of mesoporous silica - to afford a convenient one-pot reaction in aqueous medium. The structure of the NH-silanes determines the distribution of the surface-bound groups in the ASNCs. Accumulation at the channel entrances was observed by confocal laser scanning microscopy in the case of sterically hindered NH-silanes, whereas smaller NH-silanes led to a more uniform distribution. In all cases, the channels remained accessible for additional postsynthetic treatment or introduction of guests after extraction of the structure-directing agent. The particle size and morphology, as well as the pore size and the degree of ordering of the amino-functionalized ASNCs were comparable to pristine ASNCs.
机译:通过氨基官能团烷氧基硅烷(NH-硅烷)的后缩合制备了二氧化硅纳米通道(ASNCs)的功能化阵列。后缩合方法结合了合成后接枝和共缩合(介孔二氧化硅功能化的经典途径),以在水性介质中提供方便的一锅反应。NH-硅烷的结构决定了ASNC中表面结合基团的分布。在空间受阻的NH-硅烷的情况下,通过共聚焦激光扫描显微镜观察到通道入口处的积累,而较小的NH-硅烷导致更均匀的分布。在所有情况下,在提取结构导向剂后,通道仍然可以用于额外的合成后处理或引入客体。氨基官能团化ASNCs的粒径和形貌、孔径和有序程度均与原始ASNCs相当。

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