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Controlling Singlet Fission by Molecular Contortion

机译:通过分子扭曲控制单线态裂变

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Singlet fission, the generation of two triplet excited states from the absorption of a single photon, may potentially increase solar energy conversion efficiency. A major roadblock in realizing this potential is the limited number of molecules available with high singlet fission yields and sufficient chemical stability. Here, we demonstrate a strategy for developing singlet fission materials in which we start with a stable molecular platform and use strain to tune the singlet and triplet energies. Using perylene diimide as a model system, we tune the singlet fission energetics from endoergic to exoergic or iso-energetic by straining the molecular backbone. The result is an increase in the singlet fission rate by 2 orders of magnitude. This demonstration opens a door to greatly expanding the molecular toolbox for singlet fission.
机译:单线态裂变是由单个光子的吸收产生的两个三线态激发态,可能会提高太阳能转换效率。实现这一潜力的主要障碍是可获得的单分子裂变产率高且化学稳定性足够的分子数量有限。在这里,我们演示了开发单线态裂变材料的策略,其中我们从一个稳定的分子平台开始,并使用应变来调整单线态和三线态能量。使用per二酰亚胺作为模型系统,我们通过拉紧分子主链将单线态裂变能学从内能学调整为放能学或同能学。结果是单线态裂变速率提高了2个数量级。该演示为大大扩展单线态裂变的分子工具箱打开了一扇门。

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