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- W2001280639 abstract "The structures, properties and electron transfer reactivity of the ClO/ClO− coupling system are studied in this paper at ab initio (UHF and UMP2) levels and the Density Functional Theory (DFT: UB3LYP, UB3P86, UB3PW91) levels employing 6-311+G(3df) basis set and on the basis of the Golden-rule of the time-dependent perturbation theory. Investigations indicate that the results obtained using the UB3LYP method employing 6-311+G(3df) basis set is in excellent agreement with the experiment. For this coupling system, six stable coupling modes have been found which correspond to six different encounter complexes and denote six different electron transfer mechanism: four O–O directly linked structures (one collinear: D∞h, one anti-parallel: Cs, two twist: C2) and two Cl–O linked structures (cis- and anti- Cs structures). The activation energies, the stabilization energies and the electronic coupling matrix elements have also been calculated for the electron transfer reactions via these six different mechanism at the UB3LYP/6-311+G(3df) level, and then the electron transfer rates are determined at the same level. The most favorable coupling mode to the electron transfer is the anti-parallel mechanism. The averaged electron transfer rate is about 5.58×1011 M−1 s−1. It is also implied that the B3LYP method can give more reasonable results for the electron transfer reactivity of this system." @default.
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- W2001280639 date "2003-07-01" @default.
- W2001280639 modified "2023-10-18" @default.
- W2001280639 title "Theoretical study on the ClO/ClO− system electron-transfer reactivity by the Golden-rule" @default.
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- W2001280639 doi "https://doi.org/10.1016/s0166-1280(03)00131-3" @default.
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