Stuchebrukhov Alexei
Department of Chemistry, UC Davis , One Shields Avenue, Davis, California 95616, United States.
J Phys Chem B. 2016 Mar 3;120(8):1408-17. doi: 10.1021/acs.jpcb.5b00862. Epub 2015 Sep 10.
In electron-transfer reactions in proteins and other molecular systems involving long-distance electron tunneling, the tunneling time, i.e., the time that an electron spends in the barrier region between redox centers, can be comparable to vibrational periods of the nuclei. One consequence of this is the breakdown of the Born-Oppenheimer (BO) approximation at the far tails of the tunneling electronic wave functions. These tails define the coupling of redox centers exchanging electrons and hence the rates of electron transfer. We discuss the transition in the distance dependence of the rate of electron transfer that separates the BO and non-BO behavior of the tunneling reaction and show how the crossover is related to tunneling time.
在蛋白质和其他涉及长程电子隧穿的分子体系的电子转移反应中,隧穿时间,即电子在氧化还原中心之间的势垒区域所花费的时间,可能与原子核的振动周期相当。其结果之一是在隧穿电子波函数的远尾部,玻恩-奥本海默(BO)近似失效。这些尾部决定了交换电子的氧化还原中心之间的耦合,从而决定了电子转移速率。我们讨论了区分隧穿反应的BO和非BO行为的电子转移速率距离依赖性的转变,并展示了这种交叉如何与隧穿时间相关。