分子
化学
分子间力
化学物理
接受者
带隙
电子结构
再分配(选举)
半导体
计算化学
吸收光谱法
材料科学
有机化学
物理
光电子学
量子力学
政治
政治学
法学
凝聚态物理
作者
Kerry Wrighton-Araneda,Diego Cortés‐Arriagada
标识
DOI:10.1016/j.micromeso.2023.112593
摘要
A set of Guest@Host complexes formed by aromatic and heteroaromatic guest molecules encapsulated into the [Zn2(SDC)2(An2Py)] as host structure was computationally investigated. The stability of these complexes was characterized by energy decomposition and intermolecular interaction analysis, demonstrating the strong effect of dispersion forces and electrostatic interactions on the adsorption and interaction energy, being more stable the heteroaromatic cases. The electronic structure and semiconductor properties of Guest@MOF complexes have proved that heteroaromatic guest molecules allow band-gap tuning, depending on the electron donor and acceptor character of the guest molecules. Simulated absorption spectra of Guest@MOF complexes preserved the same profile because of the higher contribution of MOF, but heteroaromatic complexes displayed interesting cases of Charge−Transfer excitations, generating new bands at lower energy. The Charge−Transfer spectra have exhibited the active participation of the Guest molecule in Charge−Transfer excitations, but the electronic Redistribution has played the key role in the global spectrum of Guest@MOF complexes. Incorporating heteroaromatic guest molecules appeared as an outstanding strategy to tune-up the MOF electronic properties.
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