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Pathway complexity in the self-assembly of a zinc chlorin model system of natural bacteriochlorophyll J-aggregates

机译:天然细菌叶绿素J-聚集体锌二氢卟酚模型系统自组装的途径复杂性

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摘要

Whilst bacteriochlorophyll c, d, and e dyes self-assemble into the most efficient light harvesting J-aggregate systems found in nature, their supramolecular packing arrangements are still a matter of debate and a significant number of models have been suggested for their local and long-range ordering. Here we reveal for a synthetic model system based on a zinc chlorin (ZnChl) dye an intriguing interplay of two competing aggregation pathways by kinetic and thermodynamic studies in MeOH/water solvent mixtures: the formation of kinetically controlled off-pathway nanoparticles consisting of excitonically coupled J-dimers versus the formation of thermodynamically more stable one-dimensional helical fibers consisting of J-coupled extended aggregates. The higher order of the latter is evidenced by atomic force microscopy and a more narrow absorption spectrum of the J-aggregates. Based on a recently developed thermodynamic model that combines the cooperative K2–K growth model with a competing dimerization model, an energy landscape could be derived that describes the pathway complexity of this biomimetic system. Our studies reveal that the kinetic stability of the off-pathway nanoparticles increases with increasing concentration of ZnChl or water content in a MeOH/water solvent mixture. For a water content >90% deeply trapped off-pathway nanoparticle products are formed that do not transform anymore to the more ordered thermodynamic product within reasonable time scales. Based on these observations, we hypothesize that out-of-equilibrium aggregate structures of natural BChl dyes may also exist in the natural chlorosomes of green bacteria.
机译:尽管细菌叶绿素c,d和e染料自组装成自然界中最有效的光收集J聚集体系统,但它们的超分子堆积安排仍是一个有争议的问题,并且已经针对其局部和长寿命提出了许多模型范围排序。在这里,我们通过甲醇/水溶剂混合物中的动力学和热力学研究,揭示了基于二氢卟酚锌(ZnChl)染料的合成模型系统两个竞争性聚集途径的相互影响:形成动力学控制的非通路纳米粒子,该分子由激子耦合J-二聚体与热力学上更稳定的一维螺旋纤维的形成相比,该螺旋纤维由J耦合的扩展聚集体组成。后者的较高阶由原子力显微镜和J聚集体的更窄吸收光谱证明。基于最近开发的结合了K2–K协同生长模型和竞争性二聚化模型的热力学模型,可以得出描述该仿生系统路径复杂性的能量分布图。我们的研究表明,偏离路径的纳米颗粒的动力学稳定性随ZnChl浓度或MeOH /水溶剂混合物中水含量的增加而增加。对于水含量> 90%的产品,形成了深陷的偏离路径的纳米颗粒产物,这些产物在合理的时间范围内不再转变为更有序的热力学产物。基于这些观察结果,我们假设天然BChl染料的不平衡聚集结构也可能存在于绿色细菌的天然chlorosome中。

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