Iuchi Satoru, Koga Nobuaki
Graduate School of Information Science, Nagoya University, Furo-cho, Chikusa-ku, Nagoya 464-8601, Japan.
Phys Chem Chem Phys. 2016 Feb 14;18(6):4789-99. doi: 10.1039/c5cp06406f.
Molecular dynamics (MD) simulations are performed for d-d excited states of the aqueous Fe(bpy)3 system using a previously developed model Hamiltonian. Specifically, the characters of d-d excited states and of transitions among these states are explored to gain clues about electronic relaxation during the photo-excited metal-to-ligand charge transfer (MLCT) to the lowest quintet d-d states. By evaluating the spin-orbit couplings in various nuclear configurations through MD simulations, strong mixing among low-lying d-d states with different spin multiplicities is found not to be expected in most of the sampled nuclear configurations except for surface crossing regions. The lifetimes of triplet d-d states are evaluated by Fermi's golden rule using equilibrium MD simulations. The internal conversion from upper-lying triplet to lower-lying triplet states is estimated to occur with a lifetime of order 100 fs accompanied by the distortion of the Fe(bpy)3 complex structure. This result is consistent with the discussion in another computational study, which evaluated the intersystem crossing rates by Fermi's golden rule using electronic structure calculations. In contrast, the present MD simulations cannot provide a clear picture of intersystem crossings from the lowest triplet d-d state after the above-mentioned internal conversion. Based on this result, possible relaxation mechanisms are discussed.
使用先前开发的模型哈密顿量对水溶液中Fe(bpy)₃体系的d-d激发态进行分子动力学(MD)模拟。具体而言,探究d-d激发态的特征以及这些态之间的跃迁,以获取关于光激发金属到配体电荷转移(MLCT)至最低五重态d-d态期间电子弛豫的线索。通过MD模拟评估各种核构型中的自旋-轨道耦合,发现除表面交叉区域外,在大多数采样的核构型中,具有不同自旋多重性的低能级d-d态之间不会出现强烈混合。使用平衡MD模拟通过费米黄金规则评估三重态d-d态的寿命。估计从较高能级的三重态到较低能级的三重态的内转换发生的寿命约为100 fs,同时伴随着Fe(bpy)₃络合物结构的畸变。该结果与另一项计算研究中的讨论一致,该研究使用电子结构计算通过费米黄金规则评估系间窜越速率。相比之下,当前的MD模拟无法清晰呈现上述内转换后最低三重态d-d态的系间窜越情况。基于此结果,讨论了可能的弛豫机制。