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Molecular model of J-aggregated pseudoisocyanine fibers

机译:J胚型伪异氰酸锰纤维的分子模型

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Aggregated cyanines form ordered supramolecular structures with the potential to transport energy efficiently over long distances, a hallmark of photosynthetic light-harvesting complexes. In concentrated aqueous solution, pseudoisocyanine (PIC) spontaneously forms fibers with a chiral J-band red-shifted 1600 cm(-1) from the monomeric 0-0 transition. A cryogenic transmission electron microscopy analysis of these fibers show an average fiber width of 2.89 nm, although the molecular-level structure of the aggregate is currently unknown. To determine a molecular model for these PIC fibers, the calculated spectra and dynamics using a Frenkel exciton model are compared to experiment. A chiral aggregate model in which the PIC monomers are neither parallel nor orthogonal to the long axis of the fiber is shown to replicate the experimental spectra most closely. This model can be physically realized by the sequential binding of PIC dimers and monomers to the ends of the fiber. These insights into the molecular aggregation model for aqueous PIC can also be applied to other similar cyanine-based supramolecular complexes with the potential for long-range energy transport, a key building block for the rational design of novel excitonic systems. Published by AIP Publishing.
机译:聚集的花纹花木形式有序的超分子结构,电位有效地运输能量,远距离,光合光收获络合物的标志。在浓缩水溶液中,假硅氧烷(PIC)自发地形成纤维,其具有来自单体0-0转变的手性j带红偏移的1600cm(-1)。这些纤维的低温透射电子显微镜分析显示平均纤维宽度为2.89nm,尽管骨料的分子水平结构目前未知。为了确定这些PIBE的分子模型,将计算的光谱和使用Frenkel激子模型的动力学与实验进行比较。示出了一种手性聚集模型,其中PIC单体既不平行也不与纤维的长轴正交,最接近实验光谱。该模型可以通过PIC二聚体和单体的顺序结合物理地实现,所述单体与纤维端部的端部。这些见解还可以应用于水性图片的分子聚集模型,也可以应用于其他类似的基于氰基的超分子复合物,其具有远程能量传输的潜力,这是一种新颖的兴奋系统的合理设计的关键构建块。通过AIP发布发布。

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