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首页> 外文期刊>Accounts of Chemical Research >Tailoring porphyrins and chlorins for self-assembly in biomimetic artificial antenna systems
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Tailoring porphyrins and chlorins for self-assembly in biomimetic artificial antenna systems

机译:定制仿生人工天线系统中自组装的卟啉和二氢卟酚

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There is much diversity in the way in which photosynthetic organisms harvest sunlight. In chromophore-protein complexes, an exact orientation of pigments by the protein matrix ensures an efficient stepwise energy transfer to the reaction center where charge separation occurs. The charge separation and subsequent electron transfer steps are, however, very similar in all organisms, proving that there must exist a common ancestor. The architectural principle of chromophore-protein complexes is too complicated to be replicated in artificial light-harvesting devices. A simpler principle employs self-assembling chromophores that early green photosynthetic bacteria use in their chlorosomal antenna systems. Efforts in mimicking this self-assembly algorithm with fully synthetic pigments are presented. The fact that, as in the natural system, after self-assembly, concentration quenching is not operating due to the very orderly manner in which the chromophores are positioned ends hope for applications in artificial devices, such as hybrid solar cells.
机译:光合生物收集阳光的方式有很多。在发色团-蛋白质复合物中,蛋白质基质对色素的精确定向可确保将有效的逐步能量转移至发生电荷分离的反应中心。然而,电荷分离和随后的电子转移步骤在所有生物中都非常相似,证明必须存在一个共同的祖先。发色团-蛋白质复合物的结构原理太复杂,无法在人造光收集装置中复制。一个更简单的原理是使用自组装生色团,早期的绿色光合细菌在其绿体天线系统中使用。介绍了用完全合成的颜料模仿这种自组装算法的工作。像在自然系统中一样,自组装后,由于生色团的排列方式非常有序,因此浓度猝灭无法进行,这一事实为在人造设备(例如混合太阳能电池)中的应用带来了希望。

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