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有机分子体系中的能量聚集上转换。

Energy pooling upconversion in organic molecular systems.

机构信息

†Department of Physics, Colorado School of Mines, Golden, Colorado 80401, United States.

∥National Renewable Energy Laboratory, Golden, Colorado 80401, United States.

出版信息

J Phys Chem A. 2015 Apr 30;119(17):4009-16. doi: 10.1021/acs.jpca.5b00509. Epub 2015 Apr 1.

Abstract

A combination of molecular quantum electrodynamics, perturbation theory, and ab initio calculations was used to create a computational methodology capable of estimating the rate of three-body singlet upconversion in organic molecular assemblies. The approach was applied to quantify the conditions under which such relaxation rates, known as energy pooling, become meaningful for two test systems, stilbene-fluorescein and hexabenzocoronene-oligothiophene. Both exhibit low intramolecular conversion, but intermolecular configurations exist in which pooling efficiency is at least 90% when placed in competition with more conventional relaxation pathways. For stilbene-fluorescein, the results are consistent with data generated in an earlier experimental investigation. Exercising these model systems facilitated the development of a set of design rules for the optimization of energy pooling.

摘要

采用分子量子电动力学、微扰理论和从头计算相结合的方法,创建了一种能够估算有机分子组装体中三体单重态上转换速率的计算方法。该方法用于量化两个测试体系(二苯乙烯-荧光素和六苯并蔻-寡噻吩)中这种弛豫速率(称为能量聚集)变得有意义的条件。这两个体系都表现出低的分子内转化,但存在分子间构象,当与更传统的弛豫途径竞争时,聚集效率至少为 90%。对于二苯乙烯-荧光素,结果与早期实验研究中生成的数据一致。对这些模型体系的研究促进了一组用于优化能量聚集的设计规则的制定。

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