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Functionalized self-assembled monolayers on mesoporous silica nanoparticles with high surface coverage

机译:具有高表面覆盖率的介孔二氧化硅纳米粒子上的功能化自组装单层

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摘要

Mesoporous silica nanoparticles (MSNs) containing vinyl-, propyl-, isobutyl- and phenyl functionalized monolayers were reported. These functionalized MSNs were prepared via molecular self-assembly of organosilanes on the mesoporous supports. The relative surface coverage of the organic monolayers can reach up to 100% (about 5.06 silanesm2). These monolayer functionalize MSNs were analyzed by a number of techniques including transmission electron microscope, fourier transform infrared spectroscopy, X-ray diffraction pattern, cross-polarized Si29 MAS NMR spectroscopy, and nitrogen sorption measurement. The main elements (i.e., the number of absorbed water, the reactivity of organosilanes, and the stereochemistry of organosilane) that greatly affected the surface coverage and the quality of the organic functionalized monolayers on MSNs were fully discussed. The results show that the proper amount of physically absorbed water, the use of high active trichlorosilanes, and the functional groups with less steric hindrance are essential to generate MSNs with high surface coverage of monolayers.
机译:报道了含有乙烯基,丙基,异丁基和苯基官能化单层的中孔二氧化硅纳米粒子(MSN)。这些官能化的MSN是通过有机硅烷在介孔载体上的分子自组装制备的。有机单层的相对表面覆盖率可以达到100%(约5.06硅烷/ nm 2 )。这些单层功能化的MSNs通过许多技术进行了分析,包括透射电子显微镜,傅立叶变换红外光谱,X射线衍射图,交叉极化的Si 29 MAS NMR光谱和氮吸附测量。充分讨论了影响MSN上表面覆盖率和有机功能化单层质量的主要因素(即吸收水的数量,有机硅烷的反应性和有机硅烷的立体化学)。结果表明,适量的物理吸收水,使用高活性的三氯硅烷以及具有较少空间位阻的官能团对于生成具有高单层表面覆盖率的MSN至关重要。

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