Title: | Dioxygen Activation by Iron Complexes: The Catalytic Role of Intersystem Crossing Dynamics for a Heme-Related Model |
Authors: | Du, Likai Liu, Fang Li, Yanwei Yang, Zhongyue Zhang, Qingzhu Zhu, Chaoyuan Gao, Jun 應用化學系 應用化學系分子科學碩博班 Department of Applied Chemistry Institute of Molecular science |
Issue Date: | 8-Feb-2018 |
Abstract: | Enzymes containing heme, nonheme iron, or copper active sites play an essential role in the dioxygen binding and activation for substrate oxidation. The conceptual challenges to the quantitative modeling of this primary catalytic step arise from (1) instrinsic electronic nonadiabaticity of the spin flip events of the triplet dioxygen molecule (O-3(2)), mediated by spin-orbit coupling and (2) possible heat dissipation channels, due to the high exothermicity of dioxygen binding processes. Herein, the spin-forbidden dioxygen binding dynamics of a reduced heme model was directly investigated in terms of the nonadiabatic trajectory surface-hopping dynamics, involving the coupled singlet, triplet and quintet states. This work reveals the complexity of this elemental reaction, and the binding/dissociation dynamics of iron peroxo species is important to interpret the subsequent H atom abstraction reaction step. Furthermore, we identify nonadiabatic dynamical effects that could not be observed through traditional calculations of static geometries. |
URI: | http://dx.doi.org/10.1021/acs.jpcc.7b11462 http://hdl.handle.net/11536/144519 |
ISSN: | 1932-7447 |
DOI: | 10.1021/acs.jpcc.7b11462 |
Journal: | JOURNAL OF PHYSICAL CHEMISTRY C |
Volume: | 122 |
Begin Page: | 2821 |
End Page: | 2831 |
Appears in Collections: | Articles |