Tian Wen, Sukhanov Andrey A, Bussotti Laura, Pang Junhong, Zhao Jianzhang, Voronkova Violeta K, Di Donato Mariangela, Li Ming-De
State Key Laboratory of Fine Chemicals, School of Chemical Engineering, Dalian University of Technology, Dalian 116024, P. R. China.
Zavoisky Physical-Technical Institute, FRC Kazan Scientific Center of Russian Academy of Sciences, Kazan 420029, Russia.
J Phys Chem B. 2022 Jun 1. doi: 10.1021/acs.jpcb.2c02276.
Naphthalimide (NI) homo- and hetero-dimers adopting orthogonal geometry were prepared to study photo-induced symmetry-breaking charge transfer (SBCT) and charge recombination (CR)-induced intersystem crossing (ISC). The two moieties in the dimer are connected either at the 3-C or 4-C position of the NI unit. The photophysical properties of the dimers were studied with steady-state and transient absorption spectroscopic methods. Significant CT only occurs for the hetero-dimer, in which one NI unit has a 4-amino substituent and the other NI unit is without it. The CR-induced ISC is most efficient for this dimer (singlet oxygen quantum yield Φ = 50.3%). For the homo-dimer, in which both NI units did not present amino substitution, SBCT was not observed. Based on the electrochemical studies, we propose that the absence of SBCT for the homo-dimer is attributed to its high oxidation potential and low reduction potential. Femtosecond transient absorption (fs TA) spectra show that there is no charge separation (CS) for the homo-dimer. Nanosecond transient absorption spectroscopy indicate the formation of a triplet state with electron delocalization for the homo dimer, with a lifetime of 72.0 μs, while for the hetero dimer a triplet state with an intrinsic lifetime of 206.4 μs is observed. CS (11.6 ps) and slow CR-induced ISC (>1.5 ns) were observed for the hetero-dimer. Time-resolved electron paramagnetic resonance spectra give the zero-field splitting parameters (|| = 1894 MHz and || = 111 MHz) and electron spin polarization patterns (, , , , , ) for the triplet state of the hetero-dimer, inferring that the triplet state of the hetero-dimer is confined on the amino-substituted NI moiety.
制备了采用正交几何结构的萘二甲酰亚胺(NI)同二聚体和异二聚体,以研究光诱导的对称破缺电荷转移(SBCT)以及电荷复合(CR)诱导的系间窜越(ISC)。二聚体中的两个部分在NI单元的3-C或4-C位置相连。采用稳态和瞬态吸收光谱方法研究了二聚体的光物理性质。显著的电荷转移(CT)仅发生在异二聚体中,其中一个NI单元有4-氨基取代基,另一个NI单元没有。CR诱导的ISC对该二聚体最为有效(单线态氧量子产率Φ = 50.3%)。对于两个NI单元均未进行氨基取代的同二聚体,未观察到SBCT。基于电化学研究,我们提出同二聚体不存在SBCT归因于其高氧化电位和低还原电位。飞秒瞬态吸收(fs TA)光谱表明同二聚体不存在电荷分离(CS)。纳秒瞬态吸收光谱表明同二聚体形成了具有电子离域的三重态,寿命为72.0 μs,而异二聚体观察到固有寿命为206.4 μs的三重态。异二聚体观察到CS(11.6 ps)和缓慢的CR诱导ISC(>1.5 ns)。时间分辨电子顺磁共振光谱给出了异二聚体三重态的零场分裂参数(|| = 1894 MHz和|| = 111 MHz)以及电子自旋极化模式(,,,,,),推断异二聚体的三重态局限于氨基取代的NI部分。