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首页> 外文期刊>Bulletin of the American Physical Society >APS -APS March Meeting 2017 - Event - Ab-initio modelling of solvent effects in pentacene-derived systems in the context of singlet fission
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APS -APS March Meeting 2017 - Event - Ab-initio modelling of solvent effects in pentacene-derived systems in the context of singlet fission

机译:APS -APS 2017年3月会议-活动-在单重态裂变背景下并五苯衍生系统中溶剂效应的从头算建模

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Singlet fission (SF) is a multiexciton generation process that could be harnessed to improve the efficiency of photovoltaic devices. Experimentally, systems derived from the pentacene molecule have been shown to exhibit ultrafast SF with high yields. It has become apparent that the excited states and thereby SF is strongly affected by the molecular environment. This means that modelling approaches that restrict attention to only a few molecules for tractability are severely limited. In order to overcome this limitation we harness excited-state linear-scaling DFT (as implemented in the ONETEP code), combined with empirical MD to sample configurations of the environment. Specifically, we use constrained DFT and time-dependent DFT to model the excited electronic states relevant for SF. We investigate how these states are affected by the explicitly modelled molecular environment and the implications for fission.
机译:单重态裂变(SF)是一种多激子产生过程,可以利用它来提高光伏设备的效率。从实验上看,衍生自并五苯分子的系统显示出高产率的超快SF。显而易见的是,激发态以及由此的SF受到分子环境的强烈影响。这意味着严格限制了仅将注意力集中在少数几个分子上的建模方法。为了克服此限制,我们利用激发态线性缩放DFT(在ONETEP代码中实现),结合经验MD来对环境配置进行采样。具体来说,我们使用约束DFT和时间依赖DFT对与SF相关的激发电子态进行建模。我们调查这些状态如何受到显式建模的分子环境的影响以及对裂变的影响。

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