Wang Zeming, Ma Lin, Zhao Hongmei, Wan Yan, Zhang Xian-Fu, Li Yang, Kuang Zhuoran, Xia Andong
State Key Laboratory of Information Photonic and Optical Communications, and School of Science, Beijing University of Posts and Telecommunications (BUPT), Beijing 100876, P. R. China.
College of Chemistry, Beijing Normal University, Beijing 100875, P. R. China.
Phys Chem Chem Phys. 2023 Sep 20;25(36):24386-24394. doi: 10.1039/d3cp01934a.
Boron-dipyrromethene (BODIPY) derivatives are prospective organic-based triplet photosensitizers. Since the triplet generation yield of the parent BODIPY is low, heavy atoms are widely used to improve the triplet yield. However, the dimerization of BODIPYs can also significantly improve their ability to produce triplets. Through a comparative study of the triplet formation dynamics of two heavy-atom-free orthogonal covalent BODIPY heterodimers that differ in their dihedral angles, we have demonstrated that the mechanism of spin-orbit charge-transfer intersystem crossing (SOCT-ISC) promotes the triplet generation of BODIPY heterodimers in solution. Different from the general understanding of SOCT-ISC, the heterodimer with a smaller dihedral angle and low structural rigidity showed better triplet generation due to (a) the stronger inter-chromophoric interaction in the heterodimer, which promoted the formation of a solvent-stabilized charge-transfer (CT) state, (b) the more favorable energy level alignment with sizeable spin-orbit coupling strength, and (c) the balance between the stabilized singlet CT state and limited direct charge recombination to the ground state in a weakly polar solvent. The complete spectral characterization of the triplet formation dynamics clarified the SOCT-ISC mechanism and important factors affecting the triplet generation in BODIPY heterodimers.
硼二吡咯亚甲基(BODIPY)衍生物是很有前景的有机基三线态光敏剂。由于母体BODIPY的三线态产率较低,重原子被广泛用于提高三线态产率。然而,BODIPY的二聚化也能显著提高其产生三线态的能力。通过对两个二面角不同的无重原子正交共价BODIPY异二聚体的三线态形成动力学进行比较研究,我们证明了自旋轨道电荷转移系间窜越(SOCT-ISC)机制促进了溶液中BODIPY异二聚体的三线态产生。与对SOCT-ISC的一般理解不同,二面角较小且结构刚性较低的异二聚体表现出更好的三线态产生,这是由于(a)异二聚体中发色团间更强的相互作用,促进了溶剂稳定的电荷转移(CT)态的形成;(b)具有相当大自旋轨道耦合强度的更有利的能级排列;以及(c)在弱极性溶剂中稳定的单线态CT态与有限向基态的直接电荷复合之间的平衡。三线态形成动力学的完整光谱表征阐明了SOCT-ISC机制以及影响BODIPY异二聚体三线态产生的重要因素。