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首页> 外文期刊>International Journal of Quantum Chemistry >Theory of excitation energy transfer regarded as nonadiabatic transition 2: Calculational evidence of nonadiabatic interaction causing intermolecular excitation energy transfer
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Theory of excitation energy transfer regarded as nonadiabatic transition 2: Calculational evidence of nonadiabatic interaction causing intermolecular excitation energy transfer

机译:激发能传递理论被认为是非绝热跃迁2:非绝热相互作用引起分子间激发能传递的计算证据

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To clarify whether the excitation energy transfer from a donor molecule or aggregate to a remote acceptor molecule or aggregate can be caused by nonadiabatic interaction as expected in our previous studies [Okuno, Y. Chem Phys Lett 2001, 347, 138-142; Okuno, Y.; Mashiko, S. Int J Quantum Chem (2002, 90, 772-777)], we carried out ab initio calculations for three donor-acceptor systems. Even when the acceptor is separated from the donor by 15 Angstrom, it was found that nonadiabatic coupling elements have moderately large values in the nuclear configuration region where the potential energy surfaces at two excited states for the donor-acceptor system are close to each other; otherwise, the conical intersection between the two excited-state potential energy surfaces appears. In addition, it was found that the adiabatic approximation for the donor-acceptor system holds in the nuclear configuration region in which the initial and final wave packets in the process of the excitation energy transfer lie. These findings lead to the conclusion that the excitation energy transfer between two remote molecules or aggregates can be caused by the nonadiabatic interaction. (C) 2003 Wiley Periodicals, Inc. [References: 15]
机译:为了阐明从供体分子或聚集体到远端受体分子或聚集体的激发能转移是否可能是由非绝热相互作用引起的,正如我们先前的研究所期望的那样[Okuno,Y. Chem Phys Lett 2001,347,138-142; Y. Okuno; Mashiko,S. Int J Quantum Chem(2002,90,772-777)],我们对三个供体-受体系统进行了从头算。即使当受主与供体之间的距离为15埃时,也发现非绝热耦合元素在核构型区域具有适度的大值,在该构型区域中,供体-受体系统在两个激发态的势能面彼此接近。否则,出现两个激发态势能面之间的圆锥形相交。另外,发现供体-受体系统的绝热近似在核构型区域中成立,在该构型区域中,在激发能量转移的过程中初始波包和最终波包位于其中。这些发现得出的结论是,两个绝热分子或聚集体之间的激发能转移可能是由非绝热相互作用引起的。 (C)2003 Wiley Periodicals,Inc. [参考:15]

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