首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >First events in photosynthesis: Electronic coupling and energy transfer dynamics in the photosynthetic reaction center from Rhodobacter sphaeroides
【24h】

First events in photosynthesis: Electronic coupling and energy transfer dynamics in the photosynthetic reaction center from Rhodobacter sphaeroides

机译:光合作用的首要事件:球形球形红细菌在光合作用反应中心的电子耦合和能量转移动力学

获取原文
获取原文并翻译 | 示例
           

摘要

The rapid electronic state dynamics that occur prior to charge separation in the photosynthetic reaction center of Rhodobacter sphaeroides R-26 are investigated by `two-color' wavelength-resolved pump-probe and anisotropy measurements. A narrow band (40 fs duration transform limited) pump pulse is used to selectively excite reaction center pigments: the accessory bacteriochlorophyll (B), the upper excitonic state of the special pair (P_(y+)), or the lower excitonic state of the special pair (P_(y-)). Population dynamics are then measured with a 12 fs duration probe pulse across the entire Qy absorption spectral region as a function of time, wavelength, and polarization. Excitation of either P_(y-) or B results in the formation of a distinct optical band at 825 nm exhibiting polarization characteristics consistent with those expected for P_(y+); the band appears instantaneously upon excitation of P_(y-) with a negative anisotropy and appears somewhat delayed after excitation of B. The dynamics observed following direct excitation of the P_(y+) absorption band, that is identified to occur at 825 nm, suggests that internal conversion between the excitonic states of P is rapid, occurring with a 65 fs time constant. Excitation of the accessory BChl (i.e., populating the excited state, B*) provides a detailed answer for the mechanism of energy transfer within the bacterial reaction center. The process proceeds via a two-step mechanism, flowing sequentially from B* to P_(y+) to P_(y-) with time constants of 120 and 65 fs, respectively. These results follow from a kinetic model analysis of several pump-wavelength-dependent and polarization-dependent differential probe transmission transients that yield the first spectrum of P_(y+) at room temperature. The coherent excitonic dynamics of the special pair states, P_(y-) and P_(y+), are measured and analyzed for coupling strengths and time scales for electronic dephasing and population relaxation. These results, in conjunction with a range of the transient transmission spectra, suggest that the initially excited state of the zeroth order chromophores, i.e., B* and P_(y+), is delocalized at the earliest times, consistent with a supermolecular picture of the reaction center.
机译:通过“双色”波长分辨泵浦探针和各向异性测量研究了球形红球菌R-26光合反应中心中电荷分离之前发生的快速电子态动力学。窄带(40 fs持续时间转换限制)泵脉冲用于选择性激发反应中心色素:副细菌叶绿素(B),特殊对的较高激子态(P_(y +))或较低的激子态。特殊对(P_(y-))。然后使用12 fs持续时间的探测脉冲在整个Qy吸收光谱区域上测量种群动态,作为时间,波长和极化的函数。激发P_(y-)或B会导致在825 nm处形成明显的光学带,该偏振带的偏振特性与P_(y +)的偏振特性一致;该带在以负各向异性激发P_(y-)时立即出现,并在激发B之后出现延迟。在直接激发P_(y +)吸收带后观察到的动力学表明,该动力学发生在825 nm处。 P的激子态之间的内部转换迅速,时间常数为65 fs。辅助BChl的激发(即,填充激发态B *)为细菌反应中心内的能量转移机理提供了详细的答案。该过程通过两步机制进行,分别从B *到P_(y +)到P_(y-),时间常数分别为120和65 fs。这些结果来自对几个泵浦波长相关和偏振相关的差分探头传输瞬变的动力学模型分析,这些瞬变在室温下产生P_(y +)的第一光谱。测量并分析了特殊对态P_(y-)和P_(y +)的相干激子动力学,并分析了电子相移和种群弛豫的耦合强度和时标。这些结果与一系列瞬态透射光谱相结合,表明零级生色团的初始激发态,即B *和P_(y +),在最早的时间就离域了,这与该分子的超分子图相一致。反应中心。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号