首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >Molecular and Electronic Structure of C_5H_5N-SO_3:Correlation of Ground State Physical Properties with Orbital Energy Gaps in Partially Bound Lewis Acid-Base Complexes
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Molecular and Electronic Structure of C_5H_5N-SO_3:Correlation of Ground State Physical Properties with Orbital Energy Gaps in Partially Bound Lewis Acid-Base Complexes

机译:C_5H_5N-SO_3的分子和电子结构:部分束缚的路易斯酸碱配合物的基态物理性质与轨道能隙的相关性

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The donor-acceptor complex C_5H_5N-SO_3 has been studied in the gas phase using rotational spectroscopy. The adduct has the expected geometry in which the nitrogen lone pair is directed along the C_3 axis of the SO_3 and the SO_3 undergoes free or nearly free internal rotation within the complex. The N-S bond length is 1.915(1) A, and the NSO angle is 98.91(2)deg, indicating that the formation of the dative bond is nearly, but not entirely, complete. Small but significant changes in the heavy-atom ring structure of the pyridine upon complexation are also measured by a series of ~(13)C substitution experiments. Analysis of the ~(14)N quadrupole coupling constants indicates a transfer of approximately 0.54 electrons away from the pyridine upon formation of the dative bond. In the series of complexes of SO_3 with HCN, CH_3CN, H_3N, C_5H_5N, and (CH_3)_3N, electron-transfer values increase as the bond length decreases, and these changes are shown to accompany a gradual decrease in the energy gap between the lone pair orbital of the base and the LUMO of SO_3. Tabulated values of hardness (#eta#) and electronegativity (x) give rough but irregular estimates of these energy gaps, and the best correlations are obtained with energies derived directly from ionization potentials for the pertinent orbitals. Binding energies (D_e) have also been determined for the following complexes at the MP2/aug-cc-pVTZ level of theory/basis set: (CH_3)_3N-SO_3 (36.3 kcal/mol), C_5H_5N-SO_3 (25.5 keaUmol),H_3N-SO_3 (19.6 kcallmol),CH_3CN-SO_3 (9.0 kcal/mol),HCCCN-SO_3 (7.4 kcal/mol), and HCN-SO_3 (7.3 kcallmol). These values also correlate with the energy gap between the donor orbital of the base and the acceptor orbital of the SO_3.
机译:使用旋转光谱在气相中研究了供体-受体配合物C_5H_5N-SO_3。加合物具有预期的几何构型,其中氮孤对沿着SO_3的C_3轴定向,而SO_3在配合物中发生自由或几乎自由的内部旋转。 N-S键的长度为1.915(1)A,NSO角为98.91(2)deg,表明该主键的形成几乎但不完全。也通过一系列〜(13)C取代实验测量了吡啶的重原子环结构在络合时的微小但显着的变化。对〜(14)N四极偶合常数的分析表明,在形成固定键后,大约有0.54个电子从吡啶中转移出来。在SO_3与HCN,CH_3CN,H_3N,C_5H_5N和(CH_3)_3N的一系列配合物中,电子转移值随着键长的减小而增加,并且这些变化显示出孤子之间的能隙逐渐减小基座和SO_3的LUMO的一对轨道。硬度(#eta#)和电负性(x)的列表值给出了这些能隙的粗略但不规则的估计,并且与直接从相关轨道的电离势直接导出的能量获得了最佳相关性。还已在理论值/基础值的MP2 / aug-cc-pVTZ水平确定了以下配合物的结合能(D_e):(CH_3)_3N-SO_3(36.3 kcal / mol),C_5H_5N-SO_3(25.5 keaUmol), H_3N-SO_3(19.6 kcallmol),CH_3CN-SO_3(9.0 kcal / mol),HCCCN-SO_3(7.4 kcal / mol)和HCN-SO_3(7.3 kcallmol)。这些值还与碱的供体轨道和SO_3的受体轨道之间的能隙相关。

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