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首页> 外文期刊>Journal of the American Chemical Society >Singlet Fission in 9,10-Bis(phenylethynyl)anthracene Thin Films
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Singlet Fission in 9,10-Bis(phenylethynyl)anthracene Thin Films

机译:9,10-双(苯基乙炔基)蒽薄膜的单线态裂变

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摘要

Singlet fission (SF) in two or more electronically coupled organic chromophores converts a high-energy singlet exciton into two low-energy triplet excitons, which can be used to increase solar cell efficiency. Many known SF chromophores are unsuitable for device applications due to chemical instability and low triplet state energies. The results described here show that efficient SF occurs in polycrystalline thin films of 9,10-bis(phenylethynyl)anthracene (BPEA), a commercial dye that has singlet and triplet energies of 2.40 and 1.11 eV, respectively, in the solid state. BPEA crystallizes into two polymorphs with space groups C2/c and Pbcn, which undergo SF with k(SFA) = (109 +/- 4 ps)(-1) and k(SFB) = (490 +/- 10 ps)(-1), respectively. The high triplet energy and efficient SF evidenced from the 180 +/- 20% triplet yield make BPEA a promising candidate for enhancing solar cell performance.
机译:两个或多个电子耦合的有机发色团中的单重态裂变(SF)将高能单重态激子转换为两个低能三重态激子,可用于提高太阳能电池的效率。由于化学不稳定性和低三重态能量,许多已知的SF发色团不适合用于设备应用。此处描述的结果表明,有效的SF出现在9,10-双(苯基乙炔基)蒽(BPEA)的多晶薄膜中,这是一种商用染料,固态时的单重态和三重态能量分别为2.40和1.11 eV。 BPEA结晶为空间群C2 / c和Pbcn的两个多晶型,它们经历SF,k(SFA)=(109 +/- 4 ps)(-1)和k(SFB)=(490 +/- 10 ps)( -1)。 180 +/- 20%的三重态产率证明了高三重态能量和高效的SF,使得BPEA成为增强太阳能电池性能的有前途的候选者。

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