Goyal Sophiya, Reddy S Rajagopala
Department of Chemistry, School of Chemical Sciences and Pharmacy, Central University of Rajasthan, NH-8, Bandarsindri, Ajmer, Rajasthan 305817, India.
Phys Chem Chem Phys. 2024 Oct 23;26(41):26398-26408. doi: 10.1039/d4cp02656j.
We report state of the art electronic structure calculations RICC2 and XMCQDPT of BODIPY nonorthogonal dimers to understand the photophysical processes from the intramolecular singlet fission (iSF) perspective. We have calculated singlet, triplet and quintet states at the XMCQDPT(8,8)/cc-pVDZ level of theory and diabatic singlet states at the XMCQDPT(4,4)/cc-pVDZ level of theory. In all the systems studied, charge transfer states ((CA) and (AC)) couple strongly with locally excited ((SS)) and multiexcitonic ((TT)) states. The rates of formation of the multiexcitonic state from the locally excited state are very low on account of large activation energy (((TT)) - ((SS))). A relaxed scan along the torsional angle revealed contrasting results for axial and orthogonal conformers. We proposed a probable mechanism for contrasting photophysical properties of dimers B[3,3] and B[2,8]. We also found that substitution of CN, NH and BH at , β and α positions reduces the energy gap ( = 2(T) - (S)) significantly, making iSF a competing process in triplet state generation. Intrigued by the success of the CN group at the position in reducing the energy gap, we also studied the azaBODIPY monomer and its derivatives using the same methodology. The iSF is slightly endoergic with ∼ 0.2 eV in these systems and iSF may play an important role in their photophysical responses.
我们报告了用于理解从分子内单线态裂变(iSF)角度出发的光物理过程的BODIPY非正交二聚体的电子结构计算技术(RICC2和XMCQDPT)的最新进展。我们在XMCQDPT(8,8)/cc-pVDZ理论水平上计算了单线态、三线态和五重态,并在XMCQDPT(4,4)/cc-pVDZ理论水平上计算了非绝热单线态。在所有研究的体系中,电荷转移态((CA)和(AC))与局域激发态((SS))和多激子态((TT))强烈耦合。由于大的活化能(((TT)) - ((SS))),从局域激发态形成多激子态的速率非常低。沿着扭转角的松弛扫描揭示了轴向和正交构象异构体的对比结果。我们提出了一个可能的机制来解释二聚体B[3,3]和B[2,8]的对比光物理性质。我们还发现,在α、β和α位置上用CN、NH和BH取代会显著降低能隙(ΔE = 2(T) - (S)),使得iSF成为三线态产生中的一个竞争过程。受CN基团在α位置成功降低能隙的启发,我们还使用相同的方法研究了氮杂BODIPY单体及其衍生物。在这些体系中,iSF略微吸热,ΔE ∼ 0.2 eV,并且iSF可能在它们的光物理响应中起重要作用。