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热致变色异硫氰酸铀酰:通过超分子结构影响电荷转移带

Thermochromic Uranyl Isothiocyanates: Influencing Charge Transfer Bands with Supramolecular Structure.

作者信息

Surbella Robert G, Ducati Lucas C, Autschbach Jochen, Deifel Nicholas P, Cahill Christopher L

机构信息

Department of Chemistry , The George Washington University , 800 22nd Street NW , Washington , D.C. 20052 , United States.

Department of Fundamental Chemistry Institute of Chemistry , University of São Paulo , Av. Prof. Lineu Prestes 748 , São Paulo , SP 05508-000 , Brazil.

出版信息

Inorg Chem. 2018 Mar 5;57(5):2455-2471. doi: 10.1021/acs.inorgchem.7b02702. Epub 2018 Feb 13.

Abstract

The synthesis and structural characterization of seven new [UO(NCS)]- and [UO(NCS)Cl]-containing materials charge balanced by 4-phenylpyridinium or 4,4'-bipyridinium cations are reported. Assembly of these materials occurs via a diverse set of noncovalent interactions, with the most prevalent involving the terminal sulfur atoms, which can both accept hydrogen bonds and/or form S···S and S···O interactions. The electrostatic potential of the [UO(NCS)] and [UO(NCS)Cl] anions was calculated and mapped on the 0.001 au isodensity surface to rationalize the observed assembly modes and to provide an electrostatic basis to elucidate the role of the S atoms as both donors and acceptors of noncovalent interactions. Compounds 1-7 display a range of colors (red to yellow) as well as pronounced thermochromism. A computational treatment (time-dependent density functional theory, TDDFT) of the absorbance properties supports the temperature dependence on the ratio of inter- to intramolecular ligand to metal charge transfer (LMCT) bands as obtained from UV-vis diffuse reflectance analysis. Finally, the luminescence profiles of these materials feature additional peaks atypical for most uranyl-containing materials, and a combined spectroscopic (Raman, IR, and fluorescence) and computational (harmonic frequency calculations) effort assigns these as originating from vibronic coupling between the ν U═O symmetric stretch and bending modes of the isothiocyanate ligands.

摘要

报道了七种由4-苯基吡啶鎓或4,4'-联吡啶鎓阳离子电荷平衡的含[UO(NCS)]和[UO(NCS)Cl]的新型材料的合成及结构表征。这些材料通过多种非共价相互作用组装而成,其中最普遍的涉及末端硫原子,其既能接受氢键和/或形成S···S和S···O相互作用。计算了[UO(NCS)]和[UO(NCS)Cl]阴离子的静电势,并将其映射到0.001 au等密度表面上,以合理化观察到的组装模式,并提供一个静电基础来阐明S原子作为非共价相互作用的供体和受体的作用。化合物1-7呈现出一系列颜色(红色到黄色)以及明显的热致变色现象。对吸收特性的计算处理(含时密度泛函理论,TDDFT)支持了温度对从紫外可见漫反射分析获得的分子间与分子内配体到金属电荷转移(LMCT)带的比例的依赖性。最后,这些材料的发光谱具有大多数含铀酰材料不典型的额外峰,并且通过光谱(拉曼、红外和荧光)和计算(谐波频率计算)相结合的努力将这些峰归因为异硫氰酸酯配体的ν U═O对称伸缩和弯曲模式之间的振动耦合。

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