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A computational approach to the electronic and optical properties of Ru(II) and Ir(III) polypyridyl complexes: Applications to DSC, OLED and NLO

机译:Ru(II)和Ir(III)聚吡啶配合物的电子和光学性质的计算方法:在DSC,OLED和NLO中的应用

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Ruthenium(II) and Iridium(III) polypyridyl complexes have been intensively investigated due to their use in energy conversion and light-emitting devices and materials for non-linear optics. Quantum mechanical computer simulations of molecules and materials have become increasingly popular in the scientific community. Along with experimental investigations, such computational analyses can provide complementary information on the electronic and optical properties of transition metal compounds of interest for optoelectronic applications. Here, we provide a unified review of recent work carried out on computational investigations of a large series of Ruthenium(II) and Iridium(III) polypyridyl complexes, discussing the relations between their electronic structure and optical properties and their device functioning. Our results, obtained for vastly different systems, allow us to trace some general conclusions concerning the modeling of these transition metal complexes, casting the bases for the computational design and screening, even before their synthesis, of new and more efficient transition metal complexes for photonics applications.
机译:由于钌(II)和铱(III)聚吡啶基配合物用于能量转换和非线性光学的发光器件和材料,因此已被深入研究。分子和材料的量子力学计算机模拟已在科学界变得越来越流行。与实验研究一起,这种计算分析可以提供有关光电应用中所关注的过渡金属化合物的电子和光学性质的补充信息。在这里,我们提供了对大量钌(II)和铱(III)聚吡啶配合物的计算研究进行的最新工作的统一综述,并讨论了它们的电子结构与光学性质及其器件功能之间的关系。我们从非常不同的系统中获得的结果,使我们能够追踪有关这些过渡金属配合物建模的一些一般性结论,甚至在合成之前就为光子学的新型更高效过渡金属配合物的计算设计和筛选奠定基础应用程序。

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