Argonne National Laboratory, Chemistry Division, 60439-4831, Argonne, IL, USA.
Photosynth Res. 1996 May;48(1-2):83-97. doi: 10.1007/BF00040999.
The nature of excitation energy transfer and charge separation in isolated Photosystem II reaction centers is an area of considerable interest and controversy. Excitation energy transfer from accessory chlorophyll a to the primary electron donor P680 takes place in tens of picoseconds, although there is some evidence that thermal equilibration of the excitation between P680 and a subset of the accessory chlorophyll a occurs on a 100-fs timescale. The intrinsic rate for charge separation at low temperature is accepted to be ca. (2 ps)(-1), and is based on several measurements using different experimental techniques. This rate is in good agreement with estimates based on larger sized particles, and is similar to the rate observed with bacterial reaction centers. However, near room temperature there is considerable disagreement as to the observed rate for charge separation, with several experiments pointing to a ca. (3 ps)(-1) rate, and others to a ca. (20 ps)(-1) rate. These processes and the experiments used to measure them will be reviewed.
在孤立的光系统 II 反应中心中,激发能量转移和电荷分离的性质是一个备受关注和争议的领域。尽管有一些证据表明,P680 和一部分辅助叶绿素 a 之间的激发在 100 飞秒的时间尺度上达到热平衡,但辅助叶绿素 a 到初级电子供体 P680 的激发能量转移发生在几十皮秒内。在低温下,电荷分离的固有速率约为 (2 ps)(-1),这是基于使用不同实验技术的几项测量得出的。该速率与基于较大颗粒的估计值非常吻合,并且与细菌反应中心观察到的速率相似。然而,在接近室温的情况下,电荷分离的观察到的速率存在相当大的分歧,一些实验指出约为 (3 ps)(-1)的速率,而另一些实验则指出约为 (20 ps)(-1)的速率。这些过程以及用于测量它们的实验将进行回顾。