Dai Yasi, Dellai Angela, Bassan Elena, Bellatreccia Caterina, Gualandi Andrea, Anselmi Michele, Cozzi Pier Giorgio, Ceroni Paola, Negri Fabrizia
Department of Chemistry Giacomo Ciamician, University of Bologna, Bologna, Italy.
Center for Chemical Catalysis-C3, Alma Mater Studiorum-Università di Bologna, Via Selmi 2, 40126, Bologna, Italy.
Photochem Photobiol Sci. 2024 Mar;23(3):451-462. doi: 10.1007/s43630-023-00530-1. Epub 2024 Feb 7.
Donor-acceptor dyads based on BODIPYs have been recently employed to enhance the formation of triplet excited states with the process of spin-orbit charge transfer intersystem crossing (SOCT-ISC) which does not require introduction of transition metals or other heavy atoms into the molecule. In this work we compare two donor-acceptor dyads based on meso-naphthalenyl BODIPY by combining experimental and computational investigations. The photophysical and electrochemical characterization reveals a significant effect of alkylation of the BODIPY core, disfavoring the SOCT-ISC mechanism for the ethylated BODIPY dyad. This is complemented with a computational investigation carried out to rationalize the influence of ethyl substituents and solvent effects on the electronic structure and efficiency of triplet state population via charge recombination (CR) from the photoinduced electron transfer (PeT) generated charge-transfer (CT) state. Time dependent-density functional theory (TD-DFT) calculations including solvent effects and spin-orbit coupling (SOC) calculations uncover the combined role played by solvent and alkyl substitution on the lateral positions of BODIPY.
基于氟硼二吡咯(BODIPY)的给体-受体二元体系最近被用于通过自旋轨道电荷转移系间窜越(SOCT-ISC)过程增强三重激发态的形成,该过程无需将过渡金属或其他重原子引入分子中。在这项工作中,我们通过结合实验和计算研究,比较了两种基于中位萘基BODIPY的给体-受体二元体系。光物理和电化学表征揭示了BODIPY核心烷基化的显著影响,不利于乙基化BODIPY二元体系的SOCT-ISC机制。这通过一项计算研究得到补充,该研究旨在通过光致电子转移(PeT)产生的电荷转移(CT)态的电荷复合(CR),合理化乙基取代基和溶剂效应对电子结构以及三重态布居效率的影响。包括溶剂效应的含时密度泛函理论(TD-DFT)计算和自旋轨道耦合(SOC)计算揭示了溶剂和烷基取代在BODIPY横向位置上所起的综合作用。