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首页> 外文期刊>Angewandte Chemie >Evidence for Dynamic Chemical Kinetics at Individual Molecular Ruthenium Catalysts
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Evidence for Dynamic Chemical Kinetics at Individual Molecular Ruthenium Catalysts

机译:个体分子钌催化剂动态化学动力学的证据

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摘要

Catalytic cycles are typically depicted as possessing time-invariant steps with fixed rates. Yet the true behavior of individual catalysts with respect to time is unknown, hidden by the ensemble averaging inherent to bulk measurements. Evidence is presented for variable chemical kinetics at individual catalysts, with a focus on ring-opening metathesis polymerization catalyzed by the second-generation Grubbs' ruthenium catalyst. Fluorescence microscopy is used to probe the chemical kinetics of the reaction because the technique possesses sufficient sensitivity for the detection of single chemical reactions. Insertion reactions in submicron regions likely occur at groups of many (not single) catalysts, yet not so many that their unique kinetic behavior is ensemble averaged.
机译:通常将催化循环描绘为具有固定速率的具有时间不变步骤。 然而,通过批量测量的集合平均来隐藏各个催化剂关于时间的真正行为是未知的。 在单个催化剂的可变化学动力学中呈现证据,其侧重于第二代GRUBBS钌催化剂催化的开环复分解聚合。 荧光显微镜用于探测反应的化学动力学,因为该技术具有足够的灵敏度来检测单一化学反应。 亚微米区域中的插入反应可能以许多(不是单一)催化剂的组,但它们独特的动力学行为并不是如此。

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