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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Energy transfer dynamics in light-harvesting assemblies templated by the tobacco mosaic virus coat protein
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Energy transfer dynamics in light-harvesting assemblies templated by the tobacco mosaic virus coat protein

机译:烟草花叶病毒外壳蛋白为模板的采光组件中的能量转移动力学

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摘要

Picosecond time-resolved fluorescence spectroscopy was used to characterize energy transfer between chromophores displayed on a rod assembly of tobacco mosaic virus coat protein. The incorporation of donor chromophores, with broad and overlapping absorption and emission spectra creates an "antenna" with a large absorption cross section, which can convey excitation energy over large distances before transfer to an acceptor chromophore. The possibility for both donor-to-donor and donor-to-acceptor transfer results in complex kinetic behavior at any single wavelength. Thus, to describe the various pathways of energy transfer within this system accurately, a global lifetime analysis was performed to obtain decay associated spectra. We found the energy transfer from donor to acceptor chromophores occurs in 187 ps with an efficiency of 36%. A faster decay component of 70 ps was also observed from global lifetime analysis and is attributed to donor-to-donor transfer. Although more efficient three-chromophore systems have been demonstrated, a two-chromophore system was studied here to facilitate analysis.
机译:皮秒时间分辨荧光光谱用于表征烟草花叶病毒外壳蛋白棒组件上显示的生色团之间的能量转移。供体生色团的结合,具有宽广且重叠的吸收和发射光谱,形成了一个具有大吸收截面的“天线”,可以在转移到受体生色团之前,在很长的距离上传递激发能。供体到供体和供体到受体转移的可能性导致在任何单个波长下复杂的动力学行为。因此,为了准确地描述该系统内能量转移的各种途径,进行了整体寿命分析以获得与衰变有关的光谱。我们发现从供体生色团到受体生色团的能量转移发生于187 ps,效率为36%。从全局寿命分析中还观察到了更快的70 ps衰减分量,这归因于施主到施主之间的转移。尽管已经证明了更有效的三色团系统,但这里还是研究了两色团系统以方便分析。

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