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碳纳米反应器中的竞争氢硅烷化反应:探究纳米尺度限域对选择性的影响。

Competitive hydrosilylation in carbon nanoreactors: probing the effect of nanoscale confinement on selectivity.

机构信息

School of Chemistry, University of Nottingham, University Park, Nottingham, NG7 2RD, UK.

出版信息

Nanoscale. 2013 Dec 21;5(24):12200-5. doi: 10.1039/c3nr03966h.

Abstract

Platinum nanoparticles (PtNP) either imbedded within (PtNP@GNF) or adsorbed on the surface (PtNP/GNF) of hollow graphitised carbon nanofibres catalyse hydrosilylation reactions inside or outside the nanoreactor respectively. Comparison of the products formed using PtNP@GNF and PtNP/GNF reveals that nanoreactors create an environment promoting the formation of aromatic over aliphatic products in the competitive hydrosilylation of phenylacetylene with a mixture of triethylsilane and dimethylphenylsilane reactants. Quantification of the distribution of reaction products indicates a three- to four-fold increase in the concentration of aromatic reactants within GNF depending on the dimensions of the carbon nanoreactor. The altered local concentrations of reactants in PtNP@GNF combined with stabilisation of the reaction intermediates by interactions with the nanoreactor interior cause significant changes in the pathways of chemical transformations. The effects of nanoscale confinement on the reactivity of molecules can be harnessed for preparative synthesis in carbon nanoreactors.

摘要

铂纳米粒子(PtNP)嵌入(PtNP@GNF)或吸附在中空石墨化碳纳米纤维的表面(PtNP/GNF),分别在纳米反应器内或外部催化硅氢加成反应。使用 PtNP@GNF 和 PtNP/GNF 形成的产物的比较表明,纳米反应器创造了一种环境,在苯基乙炔与三乙硅烷和二甲基苯基硅烷反应物的混合物的竞争硅氢加成反应中,促进了芳香产物而不是脂肪族产物的形成。反应产物分布的定量分析表明,取决于碳纳米反应器的尺寸,GNF 内芳香族反应物的浓度增加了三到四倍。PtNP@GNF 中反应物的局部浓度的改变,以及与纳米反应器内部的相互作用对反应中间体的稳定化,导致化学转化途径发生显著变化。分子的纳米尺度限域对反应性的影响可用于碳纳米反应器中的制备合成。

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