Yusuf Hamied Department of Chemistry, University of Cambridge, Lensfield Rd, Cambridge CB2 1EW, U.K.
Department of Physics, Cavendish Laboratory, JJ Thomson Avenue, Cambridge CB3 0HE, U.K.
J Am Chem Soc. 2023 May 17;145(19):10712-10720. doi: 10.1021/jacs.3c00971. Epub 2023 May 3.
Singlet fission is a photophysical process that provides a pathway for more efficient harvesting of solar energy in photovoltaic devices. The design of singlet fission candidates is non-trivial and requires careful optimization of two key criteria: (1) correct energetic alignment and (2) appropriate intermolecular coupling. Meanwhile, this optimization must not come at the cost of molecular stability or feasibility for device applications. Cibalackrot is a historic and stable organic dye which, although it has been suggested to have ideal energetics, does not undergo singlet fission due to large interchromophore distances, as suggested by single crystal analysis. Thus, while the energetic alignment is satisfactory, the molecule does not have the desired intermolecular coupling. Herein, we improve this characteristic through molecular engineering with the first synthesis of an aza-cibalackrot and show, using ultrafast transient spectroscopy, that singlet fission is successfully "turned on."
单线态裂变是一种光物理过程,可为光伏器件中更有效地收集太阳能提供途径。单线态裂变候选物的设计并非易事,需要仔细优化两个关键标准:(1)正确的能量排列和(2)适当的分子间耦合。同时,这种优化不能以分子稳定性或器件应用的可行性为代价。Cibalackrot 是一种历史悠久且稳定的有机染料,尽管它的能量学被认为是理想的,但由于单晶分析表明发色团之间的距离较大,因此不会发生单线态裂变。因此,虽然能量排列令人满意,但该分子不具有所需的分子间耦合。在此,我们通过分子工程进行改进,首次合成了一种氮杂 Cibalackrot,并使用超快瞬态光谱证明,单线态裂变已成功“开启”。