Sim Eunji
Department of Chemistry, Yonsei University, 134 Sinchondong Seodaemungu, Seoul 120-749, South Korea.
J Phys Chem B. 2005 Jun 16;109(23):11829-35. doi: 10.1021/jp0503112.
The effect of the energy gap between donor and bridge states in the electron transfer of a double mutant photosynthetic purple bacterial reaction center is thoroughly investigated using a recently introduced modified on-the-fly filtered propagator important path integral formalism. By decomposition of the reduced density matrix of a system coupled to a dissipative environment, partial contributions of incoherent hopping, coherent superexchange, and partially coherent hopping transport to the overall electron or charge transfer are evaluated. Within the tight-binding donor-bridge-acceptor model, the three mechanisms coexist for a wide range of donor-bridge energy gap values, and the governing mechanism changes from incoherent hopping to partially coherent hopping and eventually to coherent superexchange as the donor-bridge energy gap becomes large.
利用最近引入的改进的即时滤波传播子重要路径积分形式,深入研究了双突变光合紫色细菌反应中心电子转移中供体和桥态之间能隙的影响。通过对与耗散环境耦合的系统的约化密度矩阵进行分解,评估了非相干跳跃、相干超交换和部分相干跳跃传输对整体电子或电荷转移的部分贡献。在紧束缚供体-桥-受体模型中,这三种机制在很宽的供体-桥能隙值范围内共存,并且随着供体-桥能隙变大,主导机制从非相干跳跃变为部分相干跳跃,最终变为相干超交换。