Rozenshtein Vladimir, Berg Alexander, Stavitski Eli, Levanon Haim, Franco Lorenzo, Corvaja Carlo
Department of Physical Chemistry and The Farkas Center for Light-Induced Processes, The Hebrew University of Jerusalem, Jerusalem 91904, Israel.
J Phys Chem A. 2005 Dec 15;109(49):11144-54. doi: 10.1021/jp0540104.
Time-resolved electron paramagnetic resonance (TREPR) spectroscopy was used to study two functionalized fullerenes consisting of a C60 moiety covalently linked to TEMPO radical via spacers of different length. Photoinduced electron spin polarization (ESP) reflecting a non-Boltzmann population within the energy levels of the spin system was observed in the electronic ground and excited states. Both fullerenes are characterized by a sign inversion of their TREPR spectra. A new mechanism of ESP generation was suggested to explain the experimental results. This mechanism, termed as the reversed quartet mechanism (RQM), includes the intersystem crossing process, which generates ESP in the excited trip-doublet and trip-quartet (2T1 and 4T1) states. This ISC is accompanied by ESP transfer to the ground state (2S0) by either electron-transfer reaction (in our case via charge transfer state, 2CT, i.e., 2T1--> 2CT --> 2S0 or internal conversion, 2T1--> 2S0.
时间分辨电子顺磁共振(TREPR)光谱用于研究两种功能化富勒烯,它们由通过不同长度间隔基与TEMPO自由基共价连接的C60部分组成。在电子基态和激发态中观察到反映自旋系统能级内非玻尔兹曼分布的光致电子自旋极化(ESP)。两种富勒烯的特征均为其TREPR光谱的符号反转。提出了一种新的ESP产生机制来解释实验结果。这种机制被称为反向四重态机制(RQM),包括系间窜越过程,该过程在激发的三重态-双重态和三重态-四重态(2T1和4T1)状态中产生ESP。这种系间窜越伴随着通过电子转移反应(在我们的情况下是通过电荷转移态,2CT,即2T1→2CT→2S0)或内转换(2T1→2S0)将ESP转移到基态(2S0)。