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首页> 外文期刊>Catalysis Today >The catalytic binuclear elimination reaction: Confirmation from in situ FTIR studies of homogeneous rhodium catalyzed hydroformylation
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The catalytic binuclear elimination reaction: Confirmation from in situ FTIR studies of homogeneous rhodium catalyzed hydroformylation

机译:催化双核消除反应:均相铑催化加氢甲酰化的原位FTIR研究证实

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摘要

In the past decade, considerable progress has been made in the understanding of catalytic systems which simultaneously possess both mononuclear and dihuclear intermediates. The present contribution begins by reviewing the necessary background concerning stoichiometric binuclear elimination. This is followed by a summary of in situ FTIR studies on corresponding homometallic and hetero-bimetaliic catalytic binuclear eliminations. Pure component spectral estimates of the constituents present during the catalysis as well as their associated concentration profiles are used in order to model the rates of binuclear elimination during alkene hydroformations. The rates of product formation are linear-quadratic in metal loading for the homometallic case and linear-bilinear in the hetero-bimetaliic case. Hetero-bimetaliic catalytic binuclear elimination provides a well-defined mechanistic basis for synergism.
机译:在过去的十年中,在同时拥有单核和双核中间体的催化体系的理解上取得了长足的进步。本文稿首先回顾了有关化学计量双核消除的必要背景。接下来是对相应的同金属和异双金属催化双核消除原位FTIR研究的总结。为了模拟在烯烃加氢形成过程中双核消除的速率,使用了催化过程中存在的成分的纯组分光谱估计值及其相关的浓度曲线。对于同金属情况,产物形成的速率在金属负载中为线性二次方,在异双金属情况中为线性双线性。异双金属催化双核消除为协同作用提供了明确的机制基础。

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