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首页> 外文期刊>Chemical Physics: A Journal Devoted to Experimental and Theoretical Research Involving Problems of Both a Chemical and Physical Nature >Ab initio configuration interaction description of excitation energy transfer between closely packed molecules
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Ab initio configuration interaction description of excitation energy transfer between closely packed molecules

机译:从头开始构型相互作用描述紧密堆积的分子之间的激发能转移

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摘要

We present new, generally applicable protocols for the computation of the coupling parameter, J, of excitation energy transfer with quantum chemical ab initio methods. The protocols allow to select the degree of approximation and computational demand such that they are applicable for realistic systems and still allow to control the quality of the approach. We demonstrate the capabilities of the different protocols using the CO dimer as a first example. Correlation effects are found to scale J by a factor of about 0.7 which is in good agreement to earlier results obtained for the ethene dimer. The various levels of the protocol allow to assess the influence of ionic configurations and the polarisation within the dimer. Further, the interplay between the Forster and Dexter contribution to J is investigated. The computations also show error compensation within approximations that are widely used for extended systems as in particular the transition density cube method. (C) 2007 Elsevier B.V. All rights reserved.
机译:我们提出了一种新的,普遍适用的协议,用于使用量子化学从头算方法计算激发能转移的耦合参数J。该协议允许选择近似程度和计算需求,以便它们适用于实际系统,并且仍然允许控制方法的质量。我们以CO二聚体为例,演示了不同协议的功能。发现相关效应将J定标约0.7倍,这与乙烯二聚体获得的较早结果非常吻合。协议的各个级别允许评估离子结构和二聚体中极化的影响。此外,研究了福斯特和德克斯特对J的贡献之间的相互作用。这些计算还显示了近似值内的误差补偿,该近似值已广泛用于扩展系统,尤其是过渡密度立方法。 (C)2007 Elsevier B.V.保留所有权利。

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