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通过耦合平衡和稀释诱导超分子聚合控制卟啉超分子聚合物的长度

Controlling the length of porphyrin supramolecular polymers via coupled equilibria and dilution-induced supramolecular polymerization.

作者信息

Weyandt Elisabeth, Leanza Luigi, Capelli Riccardo, Pavan Giovanni M, Vantomme Ghislaine, Meijer E W

机构信息

Laboratory of Macromolecular and Organic Chemistry, Eindhoven University of Technology, P.O. Box 513, 5600, Eindhoven, MB, The Netherlands.

Institute for Complex Molecular Systems (ICMS), Eindhoven University of Technology, P.O. Box 513, 5600, Eindhoven, MB, The Netherlands.

出版信息

Nat Commun. 2022 Jan 11;13(1):248. doi: 10.1038/s41467-021-27831-2.

Abstract

Multi-component systems often display convoluted behavior, pathway complexity and coupled equilibria. In recent years, several ways to control complex systems by manipulating the subtle balances of interaction energies between the individual components have been explored and thereby shifting the equilibrium between different aggregate states. Here we show the enantioselective chain-capping and dilution-induced supramolecular polymerization with a Zn-porphyrin-based supramolecular system when going from long, highly cooperative supramolecular polymers to short, disordered aggregates by adding a monotopic Mn-porphyrin monomer. When mixing the zinc and manganese centered monomers, the Mn-porphyrins act as chain-cappers for Zn-porphyrin supramolecular polymers, effectively hindering growth of the copolymer and reducing the length. Upon dilution, the interaction between chain-capper and monomers weakens as the equilibria shift and long supramolecular polymers form again. This dynamic modulation of aggregate morphology and length is achieved through enantioselectivity in the aggregation pathways and concentration-sensitive equilibria. All-atom and coarse-grained molecular simulations provide further insights into the mixing of the species and their exchange dynamics. Our combined experimental and theoretical approach allows for precise control of molecular self-assembly and chiral discrimination in complex systems.

摘要

多组分体系常常呈现出复杂的行为、路径复杂性和耦合平衡。近年来,人们探索了几种通过操纵各组分间相互作用能的细微平衡来控制复杂体系的方法,从而改变不同聚集态之间的平衡。在此,我们展示了一种基于锌卟啉的超分子体系的对映选择性封端和稀释诱导的超分子聚合,即通过加入单齿锰卟啉单体,使体系从长的、高度协同的超分子聚合物转变为短的、无序的聚集体。当混合以锌和锰为中心的单体时,锰卟啉充当锌卟啉超分子聚合物的封端剂,有效阻碍共聚物的生长并缩短其长度。稀释后,随着平衡的移动,封端剂与单体之间的相互作用减弱,长的超分子聚合物再次形成。这种聚集形态和长度的动态调节是通过聚集路径中的对映选择性和浓度敏感平衡实现的。全原子和粗粒度分子模拟为这些物种的混合及其交换动力学提供了进一步的见解。我们结合实验和理论的方法能够精确控制复杂体系中的分子自组装和手性识别。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/03db/8752679/a353abfe9f46/41467_2021_27831_Fig1_HTML.jpg

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