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The Sixteen CB_(11)H_nMe_(12-n)~- Anions with Fivefold Substitution Symmetry: Anodic Oxidation and Electronic Structure

机译:具有五重取代对称性的十六种CB_(11)H_nMe_(12-n)〜-阴离子:阳极氧化和电子结构

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The 15 symmetrically methylated derivatives of the CB_(11)H_(12)~- anion (1a) have been synthesized and found to vary greatly in ease of oxidation. Cyclic voltammetry in liquid SO_2 yielded fully reversible oxidation potentials for five of those that have no adjacent unsubstituted vertices in positions 7-12; three others showed some indication of reversibility. The anions 1a-16a and the Jahn-Teller distorted neutral radicals 1r-16r have been characterized by ab initio and density functional theory calculations. In the state average CASSCF(13,12)/6-31+G~* approximation, the ground state potential energy surface of 1r contains five symmetry-related pairs of minima. The computational results account for the reversible redox potentials very well when the solvent is included explicitly (RI-DFT(BP)/TZVP, COSMO). For display and for a semiquantitative understanding of methyl substituent effects in terms of perturbation theory, the molecular orbitals of 1a have been expressed in the symmetry-adapted cluster basis. The results serve as an underpinning for a set of additive empirical increments for redox potential prediction. Relative to the usual hydrogen standard, a single methyl group facilitates oxidation by approximately 50, 70, 70, and 10 mV in positions 1, 2, 7, and 12, respectively. This electron donor effect on the redox potential is due to a π contribution, whereas those of a (inductive and direct field) type are negligible.
机译:已经合成了15种对称的CB_(11)H_(12)〜-阴离子(1a)甲基化衍生物,发现它们在易于氧化的过程中差异很大。对于在位置7-12处没有相邻未取代顶点的那些中的五个,SO_2液体中的循环伏安法产生了完全可逆的氧化电位。其他三个显示出可逆性的迹象。阴离子1a-16a和Jahn-Teller扭曲的中性自由基1r-16r的特征是从头算和密度泛函理论计算。在状态平均CASSCF(13,12)/ 6-31 + G〜*近似下,基态势能面1r包含五对对称相关的极小值。当明确包含溶剂时(RI-DFT(BP)/ TZVP,COSMO),计算结果很好地说明了可逆氧化还原电势。为了用扰动理论显示和半定量地了解甲基取代基的作用,已经以对称适应的簇为基础表示了1a的分子轨道。该结果为氧化还原电位预测的一组附加经验增量的基础提供了依据。相对于通常的氢标准,单个甲基在1、2、7和12位分别促进了约50、70、70和10 mV的氧化。电子给体对氧化还原电势的影响归因于π贡献,而(感应和直接场)类型的电子给体的影响可忽略不计。

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