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首页> 外文期刊>Angewandte Chemie >Single Turnover at Molecular Polymerization Catalysts Reveals Spatiotemporally Resolved Reactions
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Single Turnover at Molecular Polymerization Catalysts Reveals Spatiotemporally Resolved Reactions

机译:分子聚合催化剂的单个周转率揭示了时尚分辨的反应

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摘要

Multiple active individual molecular ruthenium catalysts have been pinpointed within growing polynorbornene, thereby revealing information on the reaction dynamics and location that is unavailable through traditional ensemble experiments. This is the first single-turnover imaging of a molecular catalyst by fluorescence microscopy and allows detection of individual monomer reactions at an industrially important molecular ruthenium ring-opening metathesis polymerization (ROMP) catalyst under synthetically relevant conditions (e.g. unmodified industrial catalyst, ambient pressure, condensed phase, ca. 0.03m monomer). These results further establish the key fundamentals of this imaging technique for characterizing the reactivity and location of active molecular catalysts even when they are the minor components.
机译:多个活性单独的分子钌催化剂在生长的多冰片烯内被定位,从而揭示了通过传统集合实验无法使用的反应动力学和位置的信息。 这是通过荧光显微镜进行分子催化剂的第一单周转成像,允许在合成相关条件下检测在工业上重要的分子钌开口复分解聚合(ROMP)催化剂的单独反应(例如未修饰的工业催化剂,环境压力, 冷凝阶段,约0.03M单体)。 这些结果进一步建立了这种成像技术的关键基本原理,用于表征活性分子催化剂的反应性和位置,即使它们是次要成分。

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