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溴苯和溴苯-苯混合团簇中的π-堆积、C-H/π 和卤素键相互作用。

π-Stacking, C-H/π, and halogen bonding interactions in bromobenzene and mixed bromobenzene-benzene clusters.

机构信息

Department of Chemistry, Marquette University , P.O. Box 1881, Milwaukee, Wisconsin 53201-1881, United States.

出版信息

J Phys Chem A. 2013 Dec 19;117(50):13556-63. doi: 10.1021/jp407544c. Epub 2013 Sep 13.

Abstract

Noncovalent interactions play an important role in many chemical and biochemical processes. Building upon our recent study of the homoclusters of chlorobenzene, where π-π stacking and CH/π interactions were identified as the most important binding motifs, in this work we present a study of bromobenzene (PhBr) and mixed bromobenzene-benzene clusters. Electronic spectra in the region of the PhBr monomer S0-S1 (ππ*) transition were obtained using resonant two-photon ionization (R2PI) methods combined with time-of-flight mass analysis. As previously found for related systems, the PhBr cluster spectra show a broad feature whose center is red-shifted from the monomer absorption, and electronic structure calculations indicate the presence of multiple isomers and Franck-Condon activity in low-frequency intermolecular modes. Calculations at the M06-2X/aug-cc-pVDZ level find in total eight minimum energy structures for the PhBr dimer: four π-stacked structures differing in the relative orientation of the Br atoms (denoted D1-D4), one T-shaped structure (D5), and three halogen bonded structures (D6-D8). The calculated binding energies of these complexes, corrected for basis set superposition error (BSSE) and zero-point energy (ZPE), are in the range of -6 to -24 kJ/mol. Time-dependent density functional theory (TDDFT) calculations predict that these isomers absorb over a range that is roughly consistent with the breadth of the experimental spectrum. To examine the influence of dipole-dipole interaction, R2PI spectra were also obtained for the mixed PhBr···benzene dimer, where the spectral congestion is reduced and clear vibrational structure is observed. This structure is well-simulated by Franck-Condon calculations that incorporate the lowest frequency intermolecular modes. Calculations find four minimum energy structures for the mixed dimer and predict that the binding energy of the global minimum is reduced by ~30% relative to the global minimum PhBr dimer structure.

摘要

非共价相互作用在许多化学和生物化学过程中起着重要作用。在我们最近对氯苯同晶的研究基础上,确定了π-π堆积和 CH/π相互作用是最重要的结合模式,在这项工作中,我们研究了溴苯(PhBr)和混合溴苯-苯簇。使用共振双光子电离(R2PI)方法结合飞行时间质谱分析,获得了 PhBr 单体 S0-S1(ππ*)跃迁区域的电子光谱。与相关体系一样,PhBr 团簇光谱显示出一个宽特征,其中心从单体吸收红移,电子结构计算表明存在多个异构体和低频率分子间模式的 Franck-Condon 活性。在 M06-2X/aug-cc-pVDZ 水平上的计算总共找到了 PhBr 二聚体的 8 个最低能量结构:4 个π堆叠结构,其 Br 原子的相对取向不同(表示为 D1-D4),1 个 T 形结构(D5)和 3 个卤素键合结构(D6-D8)。这些配合物的计算结合能,经过基组超叠加误差(BSSE)和零点能(ZPE)校正,在-6 到-24 kJ/mol 范围内。时变密度泛函理论(TDDFT)计算预测这些异构体在大致与实验光谱宽度一致的范围内吸收。为了研究偶极-偶极相互作用的影响,还获得了混合 PhBr···苯二聚体的 R2PI 光谱,其中光谱拥挤度降低,观察到清晰的振动结构。该结构通过包含最低频率分子间模式的 Franck-Condon 计算得到很好的模拟。计算为混合二聚体找到了 4 个最低能量结构,并预测全局最低能量 PhBr 二聚体结构的结合能降低了约 30%。

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