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The degree of rate control of catalyst-bound intermediates in catalytic reaction mechanisms: Relationship to site coverage

机译:催化反应机制中催化剂结合中间体的速率控制:与现场覆盖的关系

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The degree of rate control (DRC) quantifies how much the energy of each species in a reaction mechanism (e.g., catalyst-bound intermediates and transition states) affects the net reaction rate. It thus plays an important role in understanding catalyst activity and selectivity and in efforts to find better catalysts. We show here that under steady-state reaction conditions, the DRC for any catalyst-bound intermediate n (X-n) is proportional to its fractional population of catalyst sites (theta(n)), X-n = -sigma x theta(n), where the proportionality constant sigma is given by sigma = Sigma i Xi x n(i). Here, Xi is the DRC of the transition state in step i, n(i) is the number of catalyst sites of the same type required for the elementary step i, and the sum is over all transition states (or elementary steps) i. Since only a few transition states typically have non-negligible DRCs, this simple sum (or weighted average of elementary-step site requirements) includes only a few terms (and only one term when there is a single rate-determining step). We also show that the DRCs of reactants and catalyst depend upon the choice of zero-energy reference, but simplify to zero when their standard states are used as the zero-energy references. (C) 2019 Elsevier Inc. All rights reserved.
机译:速率控制(DRC)量化了在反应机制中每种物种的能量(例如,催化剂结合的中间体和转变状态)量化了多少影响净反应速率。因此,它在了解催化剂活性和选择性以及寻找更好的催化剂时起着重要作用。我们在此显示在稳态反应条件下,任何催化剂中间体n(xn)的DRC与其分数催化剂位点(θ(n)),xn = -sigma xθ(n)成比例,其中σ= Sigma I Xi XN(i)给出比例常数sigma。这里,Xi是在步骤i中的转换状态的DRC,n(i)是基本步骤I所需的相同类型的催化剂站点的数量,并且总和在所有转换状态(或基本步骤)i上。由于只有几个转换状态通常具有不可忽略的DRC,因此这种简单的总和(或基本步骤站点要求的加权平均值)仅包括几个术语(并且只有单个速率确定步骤时只有一个术语)。我们还表明反应物和催化剂的DRC取决于零能量参考的选择,但是当它们的标准状态用作零能量引用时简化为零。 (c)2019 Elsevier Inc.保留所有权利。

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