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蒽二噻吩二聚体的光物理表征与时间分辨光谱:探索构象在单重态裂变中的作用

Photophysical characterization and time-resolved spectroscopy of a anthradithiophene dimer: exploring the role of conformation in singlet fission.

作者信息

Dean Jacob C, Zhang Ruomeng, Hallani Rawad K, Pensack Ryan D, Sanders Samuel N, Oblinsky Daniel G, Parkin Sean R, Campos Luis M, Anthony John E, Scholes Gregory D

机构信息

Department of Chemistry, Princeton University, Princeton, NJ 08544, USA.

Department of Chemistry, University of Kentucky, Lexington, KY 40506, USA.

出版信息

Phys Chem Chem Phys. 2017 Aug 30;19(34):23162-23175. doi: 10.1039/c7cp03774k.

Abstract

Quantitative singlet fission has been observed for a variety of acene derivatives such as tetracene and pentacene, and efforts to extend the library of singlet fission compounds is of current interest. Preliminary calculations suggest anthradithiophenes exhibit significant exothermicity between the first optically-allowed singlet state, S, and 2 × T with an energy difference of >5000 cm. Given the fulfillment of this ingredient for singlet fission, here we investigate the singlet fission capability of a difluorinated anthradithiophene dimer (2ADT) covalently linked by a (dimethylsilyl)ethane bridge and derivatized by triisobutylsilylethynyl (TIBS) groups. Photophysical characterization of 2ADT and the single functionalized ADT monomer were carried out in toluene and acetone solution via absorption and fluorescence spectroscopy, and their photo-initiated dynamics were investigated with time-resolved fluorescence (TRF) and transient absorption (TA) spectroscopy. In accordance with computational predictions, two conformers of 2ADT were observed via fluorescence spectroscopy and were assigned to structures with the ADT cores trans or cis to one another about the covalent bridge. The two conformers exhibited markedly different excited state deactivation mechanisms, with the minor trans population being representative of the ADT monomer showing primarily radiative decay, while the dominant cis population underwent relaxation into an excimer geometry before internally converting to the ground state. The excimer formation kinetics were found to be solvent dependent, yielding time constants of ∼1.75 ns in toluene, and ∼600 ps in acetone. While the difference in rates elicits a role for the solvent in stabilizing the excimer structure, the rate is still decidedly long compared to most singlet fission rates of analogous dimers, suggesting that the excimer is neither a kinetic nor a thermodynamic trap, yet singlet fission was still not observed. The result highlights the sensitivity of the electronic coupling element between the singlet and correlated triplet pair states, to the dimer conformation in dictating singlet fission efficiency even when the energetic requirements are met.

摘要

已观察到多种并苯衍生物(如并四苯和并五苯)发生了定量单重态裂变,并且扩展单重态裂变化合物库的工作是当前研究的热点。初步计算表明,蒽二噻吩在第一个光学允许的单重态S和2×T之间表现出显著的放热现象,能量差>5000 cm。鉴于满足了单重态裂变的这一条件,在此我们研究了一种由(二甲基甲硅烷基)乙烷桥共价连接并由三异丁基甲硅烷基乙炔基(TIBS)基团衍生化的二氟化蒽二噻吩二聚体(2ADT)的单重态裂变能力。通过吸收光谱和荧光光谱对2ADT和单官能化的ADT单体在甲苯和丙酮溶液中进行了光物理表征,并利用时间分辨荧光(TRF)和瞬态吸收(TA)光谱研究了它们的光引发动力学。根据计算预测,通过荧光光谱观察到了2ADT的两种构象异构体,并将其归属于ADT核围绕共价桥彼此呈反式或顺式的结构。这两种构象异构体表现出明显不同的激发态失活机制,较少的反式构象异构体代表ADT单体,主要表现为辐射衰变,而占主导的顺式构象异构体在内部转化为基态之前先弛豫到准分子几何结构。发现准分子形成动力学依赖于溶剂,在甲苯中的时间常数约为1.75 ns,在丙酮中的时间常数约为600 ps。虽然速率差异表明溶剂在稳定准分子结构中起作用,但与大多数类似二聚体的单重态裂变速率相比,该速率仍然明显较长,这表明准分子既不是动力学陷阱也不是热力学陷阱,然而仍未观察到单重态裂变。该结果突出了单重态与相关三重态对态之间的电子耦合元件对二聚体构象的敏感性,即使满足了能量要求,它在决定单重态裂变效率方面也起着重要作用。

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