Zhu Jianjun, Wang Jianji, Stell George
Department of Chemistry, Henan Normal University, Xinxiang, People's Republic of China.
J Chem Phys. 2006 Oct 28;125(16):164511. doi: 10.1063/1.2361285.
The activation energy and ligand reorganization energy for nonadiabatic electron transfer reactions in chemical and biological systems are investigated in this paper. The free energy surfaces and the activation energy are derived exactly in the general case in which the ligand vibration frequencies are not equal. The activation energy is derived by free energy minimization at the transition state. Our formulation leads to the Marcus-Hush [J. Chem. Phys. 24, 979 (1956); 98, 7170 (1994); 28, 962 (1958)] results in the equal-frequency limit and also generalizes the Marcus-Sumi [J. Chem. Phys. 84, 4894 (1986)] model in the context of studying the solvent dynamic effect on electron transfer reactions. It is found that when the ligand vibration frequencies are different, the activation energy derived from the Marcus-Hush formula deviates by 5%-10% from the exact value. If the reduced reorganization energy approximation is introduced in the Marcus-Hush formula, the result is almost exact.
本文研究了化学和生物系统中非绝热电子转移反应的活化能和配体重组能。在配体振动频率不相等的一般情况下,精确推导了自由能面和活化能。活化能是通过在过渡态使自由能最小化得到的。我们的公式在等频率极限下得到了Marcus-Hush[《化学物理杂志》24, 979 (1956); 98, 7170 (1994); 28, 962 (1958)]的结果,并且在研究溶剂对电子转移反应的动力学效应方面推广了Marcus-Sumi[《化学物理杂志》84, 4894 (1986)]模型。研究发现,当配体振动频率不同时,由Marcus-Hush公式得出的活化能与精确值相差5%-10%。如果在Marcus-Hush公式中引入约化重组能近似,结果几乎是精确的。