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多态性影响并四苯薄膜中的单重态裂变速率。

Polymorphism influences singlet fission rates in tetracene thin films.

作者信息

Arias Dylan H, Ryerson Joseph L, Cook Jasper D, Damrauer Niels H, Johnson Justin C

机构信息

National Renewable Energy Laboratory , Golden , Colorado 80401 , USA . Email:

Department of Chemistry and Biochemistry , University of Colorado , Boulder , Colorado 80309 , USA . Email:

出版信息

Chem Sci. 2016 Feb 1;7(2):1185-1191. doi: 10.1039/c5sc03535j. Epub 2015 Nov 6.

Abstract

We report the effect of crystal structure and crystallite grain size on singlet fission (SF) in polycrystalline tetracene, one of the most widely studied SF and organic semiconductor materials. SF has been comprehensively studied in one polymoprh (Tc I), but not in the other, less stable polymorph (Tc II). Using carefully controlled thermal evaporation deposition conditions and high sensitivity ultrafast transient absorption spectroscopy, we found that for large crystallite size samples, SF in nearly pure Tc II films is significantly faster than SF in Tc I films. We also discovered that crystallite size has a minimal impact on the SF rate in Tc II films, but a significant influence in Tc I films. Large crystallites exhibit SF times of 125 ps and 22 ps in Tc I and Tc II, respectively, whereas small crystallites have SF times of 31 ps and 33 ps. Our results demonstrate first, that attention must be paid to polymorphism in obtaining a self-consistent rate picture for SF in tetracene and second, that control of polymorphism can play a significant role towards achieving a mechanistic understanding of SF in polycrystalline systems. In this latter context we show that conventional theory based on non-covalent tetracene couplings is insufficient, thus highlighting the need for models that capture the delocalized and highly mobile nature of excited states in elucidating the full photophysical picture.

摘要

我们报道了晶体结构和微晶粒度对多晶并四苯中三线态激子裂变(SF)的影响,多晶并四苯是研究最广泛的三线态激子裂变和有机半导体材料之一。人们已经对一种晶型(Tc I)中的三线态激子裂变进行了全面研究,但尚未对另一种稳定性较差的晶型(Tc II)进行研究。通过精心控制热蒸发沉积条件并使用高灵敏度超快瞬态吸收光谱,我们发现,对于大晶粒尺寸的样品,几乎纯的Tc II薄膜中的三线态激子裂变比Tc I薄膜中的三线态激子裂变快得多。我们还发现,晶粒尺寸对Tc II薄膜中的三线态激子裂变速率影响极小,但对Tc I薄膜影响显著。大晶粒在Tc I和Tc II中的三线态激子裂变时间分别为125皮秒和22皮秒,而小晶粒的三线态激子裂变时间为31皮秒和33皮秒。我们的结果首先表明,在获得并四苯三线态激子裂变自洽速率图景时必须考虑多晶型现象;其次表明,控制多晶型现象对于深入理解多晶体系中的三线态激子裂变机制具有重要作用。在后一种情况下,我们表明基于非共价并四苯耦合的传统理论并不充分,从而突出了在阐明完整光物理图景时需要能够捕捉激发态离域和高迁移性质的模型。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f4bb/5975788/1216ac50e36b/c5sc03535j-f1.jpg

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