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首页> 外文期刊>Nanoscale >Chemical reactions at the graphitic step-edge: changes in product distribution of catalytic reactions as a tool to explore the environment within carbon nanoreactors
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Chemical reactions at the graphitic step-edge: changes in product distribution of catalytic reactions as a tool to explore the environment within carbon nanoreactors

机译:在石墨step-edge化学反应:催化产品分布的变化反应作为一种工具来探索环境在碳nanoreactors

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A series of explorative cross-coupling reactions have been developed to investigate the local nanoscale environment around catalytically active Pd(II) complexes encapsulated within hollow graphitised nanofibers (GNF). Two new fullerene-containing and fullerene-free Pd(II) Salen catalysts have been synthesised, and their activity and selectivity towards different substrates has been explored in nanoreactors. The catalysts not only show a significant increase in activity and stability upon heterogenisation at the graphitic step-edges inside the GNF channel, but also exhibit a change in selectivity affected by the confinement which alters the distribution of isomeric products of the reaction. Furthermore, the observed selectivity changes reveal unprecedented details regarding the location and orientation of the catalyst molecules inside the GNF nanoreactor, inaccessible by any spectroscopic or microscopic techniques, thus shedding light on the precise reaction environment inside the molecular catalyst-GNF nanoreactor.
机译:一系列的探险的交叉耦合反应开发调查当地吗纳米级周围环境催化地活跃钯(II)配合物封装在空洞graphitised纳米纤维(GNF)。fullerene-containing和fullerene-free Pd (2)塞伦催化剂合成,和他们的对不同的活性和选择性基板一直在探索nanoreactors。催化剂不仅表现出显著增加在heterogenisation在活动与稳定内的石墨step-edges GNF频道,但也表现出选择性的变化影响通过改变分配的约束异构反应的产品。此外,观察到的选择性变化揭示了前所未有的有关细节位置和方向的催化剂分子内的GNF nanoreactor,无法通过任何光谱或微观技术,从而揭示了精确分子内的反应环境catalyst-GNF nanoreactor。

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