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晶体形态对二酮吡咯并吡咯薄膜中单线态激子裂变的影响。

Effects of Crystal Morphology on Singlet Exciton Fission in Diketopyrrolopyrrole Thin Films.

作者信息

Hartnett Patrick E, Margulies Eric A, Mauck Catherine M, Miller Stephen A, Wu Yilei, Wu Yi-Lin, Marks Tobin J, Wasielewski Michael R

机构信息

Department of Chemistry and the Argonne-Northwestern Solar Energy Research Center, and ‡Department of Materials Science and Engineering and the Materials Research Center, Northwestern University , 2145 Sheridan Road, Evanston, Illinois 60208, United States.

出版信息

J Phys Chem B. 2016 Feb 25;120(7):1357-66. doi: 10.1021/acs.jpcb.5b10565. Epub 2016 Feb 10.

Abstract

Singlet exciton fission (SF) is a promising strategy for increasing photovoltaic efficiency, but in order for SF to be useful in solar cells, it should take place in a chromophore that is air-stable, highly absorptive, solution processable, and inexpensive. Unlike many SF chromophores, diketopyrrolopyrrole (DPP) conforms to these criteria, and here we investigate SF in DPP for the first time. SF yields in thin films of DPP derivatives, which are widely used in organic electronics and photovoltaics, are shown to depend critically on crystal morphology. Time-resolved spectroscopy of three DPP derivatives with phenyl (3,6-diphenylpyrrolo[3,4-c]pyrrole-1,4(2H,5H)-dione, PhDPP), thienyl (3,6-di(thiophen-2-yl)pyrrolo[3,4-c]pyrrole-1,4(2H,5H)-dione, TDPP), and phenylthienyl (3,6-di(5-phenylthiophen-2-yl)pyrrolo[3,4-c]pyrrole-1,4(2H,5H)-dione, PhTDPP) aromatic substituents in 100-200 nm thin films reveals that efficient SF occurs only in TDPP and PhTDPP (τSF = 220 ± 20 ps), despite the fact that SF is most exoergic in PhDPP. This result correlates well with the greater degree of π-overlap and closer π-stacking in TDPP (3.50 Å) and PhTDPP (3.59 Å) relative to PhDPP (3.90 Å) and demonstrates that SF in DPP is highly sensitive to the electronic coupling between adjacent chromophores. The triplet yield in PhTDPP films is determined to be 210 ± 35% by the singlet depletion method and 165 ± 30% by the energy transfer method, showing that SF is nearly quantitative in these films and that DPP derivatives are a promising class of SF chromophores for enhancing photovoltaic performance.

摘要

单线态激子裂变(SF)是提高光伏效率的一种很有前景的策略,但为了使SF在太阳能电池中有用,它应该在一种对空气稳定、具有高吸收性、可溶液加工且价格低廉的发色团中发生。与许多SF发色团不同,二酮吡咯并吡咯(DPP)符合这些标准,在此我们首次研究DPP中的SF。广泛应用于有机电子学和光伏领域的DPP衍生物薄膜中的SF产率被证明严重依赖于晶体形态。对三种具有苯基(3,6 - 二苯基吡咯并[3,4 - c]吡咯 - 1,4(2H,5H) - 二酮,PhDPP)、噻吩基(3,6 - 二(噻吩 - 2 - 基)吡咯并[3,4 - c]吡咯 - 1,4(2H,5H) - 二酮,TDPP)和苯基噻吩基(3,6 - 二(5 - 苯基噻吩 - 2 - 基)吡咯并[3,4 - c]吡咯 - 1,4(2H,5H) - 二酮,PhTDPP)芳香取代基的100 - 200 nm薄膜进行时间分辨光谱研究表明,尽管SF在PhDPP中放能最大,但高效的SF仅在TDPP和PhTDPP中发生(τSF = 220 ± 20 ps)。该结果与TDPP(3.50 Å)和PhTDPP(3.59 Å)相对于PhDPP(3.90 Å)具有更大程度的π - 重叠和更紧密的π - 堆积高度相关,并表明DPP中的SF对相邻发色团之间的电子耦合高度敏感。通过单线态耗尽法测定PhTDPP薄膜中的三线态产率为210 ± 35%,通过能量转移法测定为165 ± 30%,这表明SF在这些薄膜中几乎是定量的,并且DPP衍生物是一类有前途的用于提高光伏性能的SF发色团。

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