Son Mi Rang, Cho Yang-Jin, Kim So-Yeon, Son Ho-Jin, Cho Dae Won, Kang Sang Ook
Department of Advanced Materials Chemistry, Korea University (Sejong), Sejong, 30019, South Korea.
Phys Chem Chem Phys. 2017 Sep 20;19(36):24485-24492. doi: 10.1039/c7cp04505k.
The intramolecular photoinduced electron transfer (PET) processes of three bis(4-arylphenylamino benzo)-ortho-carboranes (ArCbAr, Ar = phenyl (Ph), naphthyl (Np) and pyrenyl (Py)) triads were investigated in CHCl and n-hexane using the femtosecond time-resolved transient absorption (TA) spectroscopic technique. In CHCl, the transient S-S absorption band of 1ArCbAr* was observed at short delay times. Concomitant with the decay of 1ArCbAr*, the TA bands for cation radical species were detected at around 700 nm for Ph˙, 650 nm for Np˙, and 580 nm Py˙. At the same time, the TA band of the carborane anion radical (Cb˙) was observed at around 430 nm. This implies that the intramolecular PET process occurs from the 1ArCbAr* state. The TA bands of the cationic and anionic radical species can be assigned by comparison to the absorption spectra of an electrochemically generated radical species. The PET process also occurs in n-hexane, as demonstrated by the monitoring of radical species in the TA spectra. In n-hexane, the TA band for Ar˙ interfered with the aggregation induced emission (AIE) at early delay times. The long lived Ar˙ species can be observed in the TA spectra at long delay times after fading of the AIE. The PET is exergonic in both solvents, as shown by the negative Gibbs energies (ΔG) for the PET processes.
使用飞秒时间分辨瞬态吸收(TA)光谱技术,在CHCl和正己烷中研究了三种双(4-芳基苯基氨基苯并)-邻碳硼烷(ArCbAr,Ar = 苯基(Ph)、萘基(Np)和芘基(Py))三元组的分子内光致电子转移(PET)过程。在CHCl中,在短延迟时间观察到1ArCbAr的瞬态S-S吸收带。随着1ArCbAr的衰减,在约700 nm处检测到Ph˙的阳离子自由基物种的TA带,在650 nm处检测到Np˙的TA带,在580 nm处检测到Py˙的TA带。同时,在约430 nm处观察到碳硼烷阴离子自由基(Cb˙)的TA带。这意味着分子内PET过程从1ArCbAr*态发生。通过与电化学产生的自由基物种的吸收光谱进行比较,可以归属阳离子和阴离子自由基物种的TA带。PET过程在正己烷中也会发生,这通过TA光谱中自由基物种的监测得到证明。在正己烷中,Ar˙的TA带在早期延迟时间干扰了聚集诱导发光(AIE)。在AIE衰减后的长延迟时间,可以在TA光谱中观察到寿命较长的Ar˙物种。如PET过程的负吉布斯自由能(ΔG)所示,PET在两种溶剂中都是放能的。