Bera Kajari, Douglas Christopher J, Frontiera Renee R
Department of Chemistry, University of Minnesota Minneapolis MN 55455 USA
Chem Sci. 2021 Oct 4;12(41):13825-13835. doi: 10.1039/d1sc04251c. eCollection 2021 Oct 27.
Chromophores undergoing singlet fission are promising candidates for harnessing solar energy as they can generate a pair of charge carriers by the absorption of one photon. However, photovoltaic devices employing singlet fission are still lacking practical applications due to the limitations within the existing molecules undergoing singlet fission. Chemical modifications to acenes can lead to efficient singlet fission devices, but the influence of changes to molecular structure on the rate of singlet fission is challenging to model and predict. Using femtosecond stimulated Raman spectroscopy we have previously demonstrated that the triplet separation process during singlet fission in crystalline rubrene is associated with the loss of electron density from its tetracene core. Based on this knowledge, we mined a library of new rubrene derivatives with electron withdrawing substituents that prime the molecules for efficient singlet fission, without impacting their crystal packing. Our rationally chosen crystalline chromophores exhibit significantly improved singlet fission rates. This study demonstrates the utility and strength of a structurally sensitive spectroscopic technique in providing insights to spectroscopy-guided materials selection and design guidelines that go beyond energy arguments to design new singlet fission-capable chromophores.
经历单重态裂变的发色团有望成为利用太阳能的候选者,因为它们可以通过吸收一个光子产生一对电荷载流子。然而,由于现有经历单重态裂变的分子存在局限性,采用单重态裂变的光伏器件仍缺乏实际应用。对并苯进行化学修饰可得到高效的单重态裂变器件,但分子结构变化对单重态裂变速率的影响难以建模和预测。我们之前利用飞秒受激拉曼光谱证明,晶体红荧烯中单重态裂变过程中的三重态分离过程与其并四苯核心的电子密度损失有关。基于这一认识,我们筛选了一个带有吸电子取代基的新型红荧烯衍生物库,这些取代基使分子具备高效单重态裂变的条件,同时不影响其晶体堆积。我们合理选择的晶体发色团展现出显著提高的单重态裂变速率。这项研究证明了一种结构敏感光谱技术在提供光谱引导的材料选择和设计指导方面的实用性和优势,这些指导超越了能量因素,用于设计新的具有单重态裂变能力的发色团。