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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Steric and Electronic Control of 1,3-Dipolar Cycloaddition Reactions in Carbon Nanotube Nanoreactors
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Steric and Electronic Control of 1,3-Dipolar Cycloaddition Reactions in Carbon Nanotube Nanoreactors

机译:碳纳米管纳米反应器中1,3-偶极环加成反应的空间和电子控制

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摘要

The use of single-walled carbon nanotubes as effective nanoreactors for preparative bimolecular reactions has been demonstrated for the first time. We show that the extreme spatial confinement of guest reactant molecules inside host carbon nanotubes increases the regioselectivity for 1,4-triazole in thermally initiated azide-alkyne cycloaddition reactions. Through comparison of the internal dimensions of the nanotube and the steric bulk of the reactants, we demonstrate that the formation of the more linear 1,4-regioisomer can be enhanced by up to 55% depending on the extent of spatial restrictions imposed within the nanoreactors. Furthermore, through systematic variation of the substituents in the para-position of the alkyne reactants, we reveal the unexpected influence of the reactants' electronic properties on the regioselectivity of reactions within nanoreactors, which act to either oppose or promote the preferential formation of the 1,4-regioisomer induced by steric effects, reflecting the unique ability of carbon nanotubes to stabilize the dipole moment of confined reactants. Thus, we show that the observed regioselectivity of azide-alkyne cycloaddition reactions confined within carbon nanotube nanoreactors reflects a subtle interplay between both steric and electronic factors.
机译:首次证明了使用单壁碳纳米管作为用于制备分散反应的有效纳米反应器。我们表明,宿主碳纳米管内的客观反应物分子的极端空间禁闭增加了在热引发的叠氮化物 - 炔环加油反应中为1,4-三唑的区域选择性。通过比较纳米管的内部尺寸和反应物的空间大部分的体积体积,我们证明了更线性1,4-℃的形成,取决于纳米反应器内施加的空间限制程度,可以增强高达55% 。此外,通过对炔烃反应物的对 - 位置中取代基的系统变化,我们揭示了反应物电子性质对纳米反应器内反应区域的意外影响,这起到反对或促进了1的优先形成,通过空间效应引起的4-℃,反映了碳纳米管的独特能力,以稳定受限反应物的偶极力矩。因此,我们表明,观察到的亚齐烷 - 炔烃环加入反应的区域选择性限制在碳纳米管纳米反应器内的反映反映了两个空间和电子因素之间的微妙相互作用。

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