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高分辨率电子能谱、优先金属结合位点和多环芳烃锂配合物的热化学。

High-resolution electron spectroscopy, preferential metal-binding sites, and thermochemistry of lithium complexes of polycyclic aromatic hydrocarbons.

机构信息

Department of Chemistry, University of Kentucky, Lexington, Kentucky 40506-0055, USA.

出版信息

J Chem Phys. 2011 Jan 14;134(2):024301. doi: 10.1063/1.3523346.

Abstract

Polycyclic aromatic hydrocarbons are model systems for studying the mechanisms of lithium storage in carbonaceous materials. In this work, Li complexes of naphthalene, pyrene, perylene, and coronene were synthesized in a supersonic metal-cluster beam source and studied by zero-electron-kinetic-energy (ZEKE) electron spectroscopy and density functional theory calculations. The adiabatic ionization energies of the neutral complexes and frequencies of up to nine vibrational modes in the singly charged cations were determined from the ZEKE spectra. The metal-ligand bond energies of the neutral complexes were obtained from a thermodynamic cycle. Preferred Li∕Li(+) binding sites with the aromatic molecules were determined by comparing the measured spectra with theoretical calculations. Li and Li(+) prefer the ring-over binding to the benzene ring with a higher π-electron content and aromaticity. Although the ionization energies of the Li complexes show no clear correlation with the size of the aromatic molecules, the metal-ligand bond energies increase with the extension of the π-electron network up to perylene, then decrease from perylene to coronene. The trends in the ionization and metal-ligand bond dissociation energies of the complexes are discussed in terms of the orbital energies, local quadrupole moments, and polarizabilities of the free ligands and the charge transfer between the metal atom and aromatic molecules.

摘要

多环芳烃是研究碳质材料中锂存储机制的模型体系。在这项工作中,萘、芘、苝和并四苯的 Li 配合物在超音速金属团簇束源中合成,并通过零电子动能(ZEKE)电子光谱和密度泛函理论计算进行研究。中性配合物的绝热电离能和单电荷阳离子中多达九个振动模式的频率从 ZEKE 光谱中确定。中性配合物的金属-配体键能通过热力学循环获得。通过比较测量的光谱与理论计算,确定了芳香分子中 Li∕Li(+)的优先结合位点。Li 和 Li(+)优先与具有更高π电子含量和芳香性的苯环发生环上结合。尽管 Li 配合物的电离能与芳香分子的大小没有明显的相关性,但金属-配体键能随着π 电子网络的扩展而增加,直到苝,然后从苝到并四苯减少。根据自由配体的轨道能量、局部四极矩和极化率以及金属原子和芳香分子之间的电荷转移,讨论了配合物的电离和金属-配体键离解能的趋势。

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