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singlet-fission 发色团溶液中体系间交叉速率定量的陷阱。

Pitfalls of quantifying intersystem crossing rates in singlet-fission chromophore solutions.

机构信息

Department of Chemistry, The University of Adelaide, Adelaide, South Australia 5005, Australia.

出版信息

J Chem Phys. 2022 Aug 28;157(8):084312. doi: 10.1063/5.0100619.

Abstract

Singlet fission (SF), a process that produces two triplet excitons from one singlet exciton, has attracted recent interest for its potential to circumvent the detailed-balance efficiency limit of single-junction solar cells. For the potential of SF to be fully realized, accurate assignment and quantification of SF is necessary. Intersystem crossing (ISC) is another process of singlet to triplet conversion that is important to distinguish from SF to avoid either over- or under-estimation of SF triplet production. Here, we quantify an upper bound on the rate of ISC in two commonly studied SF chromophores, TIPS-pentacene and TIPS-tetracene, by using transient absorption spectroscopy of solutions of varying concentrations in toluene. We show that SF in solutions of these acenes has previously been misidentified as ISC, and vice versa. By determining a bimolecular SF rate constant in concentrated solutions in which SF dominates over ISC, we distinguish triplet formation due to SF from triplet formation due to ISC and show that the characteristic time scale of ISC must be longer than 325 ns in TIPS-pentacene, while it must be longer than 118 ns in TIPS-tetracene. We additionally note that no excimer formation is observed in the relatively dilute (up to 8 mM) solutions studied here, indicating that previous excimer formation observed at much higher concentrations may be partially due to aggregate formation. This work highlights that an accurate quantification of ISC is crucial as it leads to accurate determination of SF rate constants and yields.

摘要

单线态裂变 (SF) 是一种将一个单线态激子转化为两个三线态激子的过程,由于其有可能规避单结太阳能电池的详细平衡效率限制,因此最近引起了人们的兴趣。为了充分发挥 SF 的潜力,需要对 SF 进行准确的分配和量化。系间窜越 (ISC) 是另一种单线态到三线态的转化过程,需要与 SF 区分开来,以避免对 SF 三线态产生的高估或低估。在这里,我们通过使用瞬态吸收光谱法研究甲苯溶液中不同浓度的两种常见 SF 发色团 TIPS-五苯和 TIPS-四苯,定量了 ISC 在这两种发色团中的速率上限。我们表明,这些稠环芳烃溶液中的 SF 之前被错误地识别为 ISC,反之亦然。通过确定在 SF 主导 ISC 的浓溶液中 SF 的双分子速率常数,我们将 SF 引起的三重态形成与 ISC 引起的三重态形成区分开来,并表明 ISC 的特征时间尺度必须在 TIPS-五苯中长于 325 ns,而在 TIPS-四苯中必须长于 118 ns。我们还注意到,在所研究的相对稀溶液(高达 8 mM)中未观察到激基复合物的形成,这表明以前在更高浓度下观察到的激基复合物形成可能部分是由于聚集形成的。这项工作强调了准确量化 ISC 的重要性,因为它可以准确确定 SF 速率常数和产率。

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