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权衡:用于分子间能量平衡的光谱工具

Tipping the Scales: Spectroscopic Tools for Intermolecular Energy Balances.

作者信息

Poblotzki Anja, Gottschalk Hannes C, Suhm Martin A

机构信息

Institut für Physikalische Chemie, Universität Göttingen , Tammannstraße 6, 37077 Göttingen, Germany.

出版信息

J Phys Chem Lett. 2017 Nov 16;8(22):5656-5665. doi: 10.1021/acs.jpclett.7b02337. Epub 2017 Nov 8.

Abstract

Intermolecular energy balances are supramolecular complexes with a nearly degenerate bistable docking structure and low barriers in between, which can be tuned by chemical substitution to prefer one or the other site. The docking preference can be probed by forming the complexes in a supersonic jet expansion and by measuring their spectroscopic signature. Linear spectroscopies are shown to be well suited for this purpose, in particular when they are assisted by more sensitive techniques and by approximate computed photon interaction cross sections. Molecular analogues of conventional beam balances, seesaw balances, and torsional balances are discussed, all based on noncovalent interactions. The discrimination of energy differences down to the sub-kJ/mol level is demonstrated. The correspondence to intramolecular torsional balances in NMR spectroscopy is outlined. Besides highlighting conformational preferences, the results of intermolecular balance experiments can serve as critical benchmarks for an accurate description of intermolecular forces and zero-point vibrational energies.

摘要

分子间能量平衡是具有近乎简并双稳态对接结构且其间势垒较低的超分子复合物,可通过化学取代进行调节以偏好其中一个或另一个位点。对接偏好可通过在超声速射流膨胀中形成复合物并测量其光谱特征来探测。线性光谱显示非常适合此目的,特别是当它们由更灵敏的技术和近似计算的光子相互作用截面辅助时。讨论了基于非共价相互作用的传统梁式天平、跷跷板天平和扭转天平的分子类似物。展示了分辨低至亚千焦每摩尔水平能量差异的能力。概述了与核磁共振光谱中分子内扭转天平的对应关系。除了突出构象偏好外,分子间平衡实验的结果还可作为准确描述分子间力和零点振动能的关键基准。

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