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Thermal Annealing of Singlet Fission Microcrystals Reveals the Benefits of Charge Transfer Couplings and Slip-Stacked Packing

机译:单向裂变微晶的热退火揭示了电荷转移联轴器和防滑堆叠填料的益处

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摘要

Defects in molecular crystals, created by nonequilibrium crystal packing, can have significant influence over the energetics and dynamics of singlet fission. Though normally thought of as detrimental to the performance of organic semiconductors, in principle, defects could have crystal packings with better energetics and couplings for singlet fission than equilibrium crystal packing structures. Using two-dimensional electronic microscopy and X-ray diffraction, we monitor the population of non-equilibrium slip-stacked geometries in microcrystals of TIPS-pentacene before and after thermal annealing. We find that the presence of these slip-stacked structures enhances the singlet fission yield, as measured by triplet excited state absorption. The slip-stacked geometry matches no known polymorph of TIPS-pentacene, according to X-ray diffraction but indicates that slip-stacked molecules are present as tiny crystalline domains within the larger microcrystal. The data presented here provide evidence that slip-stacked geometries, present as defects in larger TIPS-pentacene microcrystals, enhance singlet fission yields.
机译:通过非QuibiBribrium填充产生的分子晶体的缺陷可能对单次裂变的能量和动态产生重大影响。虽然通常认为对有机半导体的性能有害,但原则上,缺陷可能具有比平衡晶体填充结构更好的单线裂缝能量和联轴器的晶体填料。使用二维电子显微镜和X射线衍射,我们在热退火之前和之后监测尖端 - 五苯基微晶的非平衡滑堆几何形状的群体。我们发现这些滑动堆叠结构的存在增强了通过三重态激发状态的吸收测量的单次裂变产率。根据X射线衍射,滑动堆叠的几何形状与尖端五苯甲酸酯的已知多晶型物质匹配,但表明滑动堆叠的分子作为较大微晶内的微小结晶结构域存在。这里提出的数据提供了证据,即滑倒堆叠的几何形状,作为较大的尖端 - 五烯微晶微晶中的缺陷,增强单次裂化产率。

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