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Characterization of the t-Butyl Radical and Its Elusive Anion

机译:叔丁基自由基及其难以捉摸的阴离子的表征

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The t-butyl radical and its anion are studied theoretically using state-of-the-art quantum mechanical methods including coupled cluster theory with full single, double, and triple excitations (CCSDT) and CCSDT with perturbative quadruple excitations [CCSDT(Q)], in concert with large correlation-consistent cc-pVXZ and aug-cc-pVXZ (X = D, T, Q, 5) basis sets. The relative energies are extrapolated to the complete basis set limit (CBS). The lowest energy structure of the i-butyl radical has a nonplanar carbon backbone with overall C_(3v) symmetry. Low-lying C_(3/t) and C_s symmetry transition states, for pyramidal inversion and methyl group rotation, respectively, between equivalent C3v minima are investigated. The barriers for these interconversions are both less than 1 kcal mol~(-1), but the corresponding barriers on the anion potential energy surface are more pronounced. Using the focal point analysis technique, we obtain a value of —0.48 kcal mol~(-1) for the t-butyl radical adiabatic electron affinity at the CCSDT(Q)/CBS level of theory, where the negative sign indicates that the formation of the r-butyl anion is adiabatically unfavorable. We show that the electron affinity, whose sign has been the subject of debate, is very sensitive to both the basis set and the correlation treatment, and previous experimental and theoretical estimates of its value bracket the value computed herein. Our results indicate that the t-butyl anion is classically metastable with a vertical detachment energy of over 10 kcal mol~(-1) to reach the neutral potential energy surface. However, the inclusion of the zero-point vibrational effects seems to favor its nonexistence.
机译:使用最新的量子力学方法对叔丁基自由基及其阴离子进行理论研究,这些方法包括具有完全单,双和三重激发(CCSDT)的耦合簇理论和具有扰动四重激发的CCSDT [CCSDT(Q)] ,与大的相关性一致的cc-pVXZ和aug-cc-pVXZ(X = D,T,Q,5)基集配合使用。相对能量被外推到完整的基本设定极限(CBS)。异丁基自由基的最低能级结构具有整体C_(3v)对称的非平面碳骨架。研究了当量C3v极小值之间的金字塔倒置和甲基旋转的低洼C_(3 / t)和C_s对称转变态。这些互变的势垒都小于1 kcal mol〜(-1),但是阴离子势能表面上的相应势垒更加明显。使用焦点分析技术,我们得出的理论值CCSDT(Q)/ CBS的叔丁基自由基绝热电子亲和力值为-0.48 kcal mol〜(-1),其中负号表示形成叔丁基阴离子的绝热是不利的。我们表明,电子亲和力(其符号一直是争论的主题)对基集和相关处理都非常敏感,并且先前对其值进行的实验和理论估计都将此处计算的值括起来。我们的结果表明,叔丁基阴离子是经典的亚稳态分子,其垂直脱离能超过10 kcal mol〜(-1)到达中性势能表面。但是,零点振动效应的出现似乎有利于其不存在。

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