Maity Nilabja, Kim Woojae, Panjwani Naitik A, Kundu Arup, Majumder Kanad, Kasetty Pranav, Mishra Divji, Bittl Robert, Nagesh Jayashree, Dasgupta Jyotishman, Musser Andrew J, Patil Satish
Solid State and Structural Chemistry Unit, Indian Institute of Science, Bangalore, 560012, India.
Department of Chemistry and Chemical Biology, Cornell University, Ithaca, NY, 14853, USA.
Nat Commun. 2022 Sep 6;13(1):5244. doi: 10.1038/s41467-022-32844-6.
Harvesting long-lived free triplets in high yields by utilizing organic singlet fission materials can be the cornerstone for increasing photovoltaic efficiencies potentially. However, except for polyacenes, which are the most studied systems in the singlet fission field, spin-entangled correlated triplet pairs and free triplets born through singlet fission are relatively poorly characterized. By utilizing transient absorption and photoluminescence spectroscopy in supramolecular aggregate thin films consisting of Hamilton-receptor-substituted diketopyrrolopyrrole derivatives, we show that photoexcitation gives rise to the formation of spin-0 correlated triplet pair (TT) from the lower Frenkel exciton state. The existence of (TT) is proved through faint Herzberg-Teller emission that is enabled by vibronic coupling and correlated with an artifact-free triplet-state photoinduced absorption in the near-infrared. Surprisingly, transient electron paramagnetic resonance reveals that long-lived triplets are produced through classical intersystem crossing instead of (TT) dissociation, with the two pathways in competition. Moreover, comparison of the triplet-formation dynamics in J-like and H-like thin films with the same energetics reveals that spin-orbit coupling mediated intersystem crossing persists in both. However, (TT) only forms in the J-like film, pinpointing the huge impact of intermolecular coupling geometry on singlet fission dynamics.
利用有机单重态裂变材料高产率地捕获长寿命自由三重态可能是提高光伏效率的基石。然而,除了在单重态裂变领域研究最多的多并苯之外,通过单重态裂变产生的自旋纠缠相关三重态对和自由三重态的表征相对较差。通过在由汉密尔顿受体取代的二酮吡咯并吡咯衍生物组成的超分子聚集体薄膜中利用瞬态吸收和光致发光光谱,我们表明光激发会从较低的弗伦克尔激子态产生自旋为0的相关三重态对(TT)。(TT)的存在通过微弱的赫兹伯格-泰勒发射得到证明,该发射由振动耦合产生,并与近红外中无伪影的三重态光致吸收相关。令人惊讶的是,瞬态电子顺磁共振表明长寿命三重态是通过经典的系间窜越而非(TT)解离产生的,这两种途径相互竞争。此外,对具有相同能量的J型和H型薄膜中三重态形成动力学的比较表明,自旋轨道耦合介导的系间窜越在两者中均存在。然而,(TT)仅在J型薄膜中形成,这突出了分子间耦合几何结构对单重态裂变动力学的巨大影响。