Golden-rule treatment on the ClO/ClO+ electron-transfer system


Autoria(s): Yan, SH; Bu, YX; Qin, M; Sun, LX; Han, KL
Data(s)

04/07/2003

Resumo

The structures, properties and electron transfer reactivity of the ClO/ClO+ coupling system are studied in this paper at ab initio (HF and MP2) levels and the density functional theory (DFT: B3LYP, B3P86, B3PW91) levels employing 6311 + G(3df) basis set and on the basis of the golden-rule of the time-dependent perturbation theory. Investigations indicate that the results got from the B3LYP method employing 6-311 + G(3df) basis set is in excellent agreement with the experiment. The activation energies, the stabilization energies and the electronic coupling matrix elements have also been calculated by using the B3LYP/6-311 + G(3df) method, and then the electron transfer rates are determined at this level. The electronic coupling matrix element of EC.6 is very small, only 0.03 kcal/mol, while that of EC.7 is the biggest, being 12.41 kcal/mol, the corresponding electron transfer rate is also the fastest among these seven encounter complexes. The averaged electron transfer rate is about 1.672 X 10(11) M-1 s(-1). It is indicated that the structures optimized by B3LYP method are more reliable than the results got from the other four methods. It also testified that the electronic coupling matrix element is the vital factor that significantly affects the electron transfer rate. (C) 2003 Elsevier B.V. All rights reserved.

Identificador

http://159.226.238.44/handle/321008/82409

http://www.irgrid.ac.cn/handle/1471x/137836

Idioma(s)

英语

Fonte

Yan SH; 步宇翔;Qin M; Sun LX; 韩克利.Golden-rule treatment on the ClO/ClO+ electron-transfer system,Journal of Molecular Structure(Theochem),2003,629():151-163

Palavras-Chave #electron-transfer reactivity #golden-rule #B3LYP #encounter-complex #electron coupling matrix element #ClO+ClO+ system
Tipo

期刊论文