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Morphological Control of Chromophore Spin State in Zinc Porphyrin-Peptide Assemblies

机译:卟啉锌肽组装体中发色团自旋态的形态学控制

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Self-assembled peptide micelles and fibers demonstrate unique control over the photophysical properties of the bound, light-activated chromophore, zinc protoporphyrin IX, (PPIX)Zn. Micelles encapsulate either a mixture of uncoordinated and coordinated (PPIX)Zn or all coordinated depending on the ratio of peptide/porphyrin. As the ratio increases toward a 1:1 micelle/porphyrin ratio, providing the chromophore with a discrete coordination environment reminiscent of unstructured proteins, the micelles favor triplet formation. Fibers, however, promote a linear array of porphyrin molecules that dictates exciton hopping and excimer formation at ratios as high as 60:1, peptide/porphyrin. However, even in fibers, the formation of the triplet species increases with increasing peptide/porphyrin ratio due to increased spatial separation between neighboring chromophores facilitating intersystem crossing. Full characterization of the micelles structures and comparison to the fibers lead to the comparison with natural systems and the ability to control the excited populations that have utility in photocatalytic processes. In addition, the incorporation of a second chromophore, heme, yields an electron transfer pathway in both micelles and fibers that highlights the utility of the peptide assemblies when engineering multichromophore arrays as inspired by natural, photosynthetic proteins.
机译:自组装的肽胶束和纤维表现出对结合的光活化生色团锌原卟啉IX(PPIX)Zn的光物理性质的独特控制。胶束包封未配位和配位(PPIX)Zn的混合物,或全部配位的肽,具体取决于肽/卟啉的比例。当该比例朝着1:1的胶束/卟啉比例增加时,为生色团提供了一个离散的配伍环境,使人联想到非结构化蛋白质,胶束有利于三重态的形成。然而,纤维促进了卟啉分子的线性排列,该线性排列决定了激子跳跃和准分子形成的比例高达60:1(肽/卟啉)。然而,即使在纤维中,由于相邻发色团之间的空间间隔增加,促进了系统间的交叉,三联体物种的形成也随着肽/卟啉比的增加而增加。胶束结构的全面表征以及与纤维的比较导致与自然系统的比较以及控制在光催化过程中有用的受激种群的能力。另外,第二种生色团血红素的掺入在胶束和纤维中均产生电子转移途径,这突显了当由天然光合蛋白激发而改造多生色团阵列时肽组件的效用。

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