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首页> 外文期刊>Chemistry: A European journal >Controlling the regioselectivity of the hydrosilylation reaction in carbon nanoreactors
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Controlling the regioselectivity of the hydrosilylation reaction in carbon nanoreactors

机译:控制碳纳米反应器中氢化硅烷化反应的区域选择性

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摘要

Hollow graphitized carbon nanofibres (GNF) are employed as nanoscale reaction vessels for the hydrosilylation of alkynes. The effects of confinement in GNF on the regioselectivity of addition to triple carbon-carbon bonds are explored. A systematic comparison of the catalytic activities of Rh and RhPt nanoparticles embedded in a nanoreactor with free-standing and surface-adsorbed nanoparticles reveals key mechanisms governing the regioselectivity. Directions of reactions inside GNF are largely controlled by the non-covalent interactions between reactant molecules and the nanofibre channel. The specific π-π interactions increase the local concentration of the aromatic reactant and thus promote the formation of the E isomer of the β-addition product. In contrast, the presence of aromatic groups on both reactants (silane and alkyne) reverses the effect of confinement and favours the formation of the Z isomer due to enhanced interactions between aromatic groups in the cis-orientation with the internal graphitic step-edges of GNF. The importance of π-π interactions is confirmed by studying transformations of aliphatic reactants that show no measurable changes in regioselectivity upon confinement in carbon nanoreactors. Nanoscale reaction vessels: Carbon nanoreactors are prepared by encapsulating catalytic Rh or RhPt nanoparticles in hollow graphitised nanofibres. Inside the nanoreactors, the pathways of the hydrosilylation reactions differ from those on the surface of nanofibres or in the bulk phase (see scheme).
机译:中空石墨化碳纳米纤维(GNF)被用作炔烃的氢化硅烷化的纳米级反应容器。探索了在GNF中的限制对三重碳-碳键加成区域选择性的影响。系统地比较嵌入在纳米反应器中的Rh和RhPt纳米粒子与独立的和表面吸附的纳米粒子的催化活性,揭示了控制区域选择性的关键机制。 GNF内部反应的方向很大程度上受反应物分子与纳米纤维通道之间非共价相互作用的控制。特定的π-π相互作用增加了芳族反应物的局部浓度,从而促进了β加成产物的E异构体的形成。相反,两种反应物(硅烷和炔烃)上均存在芳基会逆转限制作用,并由于Z异构体与GNF内部石墨台阶边缘的顺式取向中芳基之间的相互作用增强,有利于Z异构体的形成。 。通过研究脂族反应物的转化,证实了π-π相互作用的重要性,脂族反应物的转化显示,限制在碳纳米反应器中时,区域选择性没有可测量的变化。纳米级反应容器:碳纳米反应器是通过将催化Rh或RhPt纳米颗粒封装在中空石墨化纳米纤维中制备的。在纳米反应器内部,氢化硅烷化反应的途径与纳米纤维表面或本体相中的途径不同(请参见方案)。

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