We theoreticall'/> Design Principles of Electronic Couplings for Intramolecular Singlet Fission in Covalently-Linked Systems
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Design Principles of Electronic Couplings for Intramolecular Singlet Fission in Covalently-Linked Systems

机译:共价连接系统中分子内单次裂变的电子联轴器设计原理

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摘要

We theoretically investigate the singlet fission in three types of covalently-linked systems, that is, ortho-, meta- and para-linked pentacene dimers, where these are shown to have significantly different singlet fission rates. Each molecule is composed of two chromophores (pentacenes), which are active sites for singlet fission, and covalent bridges linking them. We clarify the origin of the difference in the electronic couplings in these systems, which are found to well support a recent experimental observation. It is also found that the next-nearest-neighbor interaction is indispensable for intramolecular singlet fission in these systems. On the basis of these results, we present design principles for efficient intramolecular singlet fission in covalently-linked systems and demonstrate the performance by using several novel conjugated linkers.]]>
机译:<![cdata [ src ='http://pubs.acs.org/appl/literatum/publisher/achs/journals/content/jpcafh/2016/jpcafh.2016.120.issue-31/acs.jpca.6b07153/ 20160805 /图像/中等/ JP-2016-071536_0005.gif“>我们理论上研究了三种类型的共价连接系统中的单线裂变,即 ortho - , Meta - 和帕拉(Para) - 链接五烯二聚体,其中显示出具有显着不同的单线裂变率。每种分子由两种发色团(五苯磺酸)组成,其是单线裂变的活性位点,以及连接它们的共价桥。我们阐明了这些系统中的电子耦合差异的起源,该系统被发现很好地支持最近的实验观察。还发现,下一个最近邻的相互作用对于这些系统中的分子内单线裂变是必不可少的。在这些结果的基础上,我们在共价连接的系统中提出了高效的分子内单次裂变的设计原理,并通过使用几种新型共轭接头来证明性能。]]>

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