Single Molecule Analysis of Self-Assembly Supramolecular Oligomers in Solution
Fu-Na Meng, Xuyang Yao, Junji Zhang, Yi‐Lun Ying, He Tian
Abstract
Fu-Na Meng, Xuyang Yao, Junji Zhang, Yi‐Lun Ying, He Tian
Abstract
The supramolecular oligomers play an important role because their preorganized precise structures lead to a well-defined structure–property relationship. Here, we employed an α-hemolysin nanopore as a single molecule tool to investigate the self-assembly supramolecular oligomers of bis( p -sulfonatocalix[4]arene) ( bis SC4) and bis(methylviologen) ( bis MV 4+ ). The self-assembly of supramolecular oligomers could be dynamic monitored at single molecule level. The association constant between bis SC4 and bis MV 4+ was calculated based on current blockage frequencies at the single molecule level. This work provides a complementary method to characterize the self-assembly oligomers with low molecular weight in solution.
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The supramolecular oligomers play an important role because their preorganized precise structures lead to a well-defined structure–property relationship. Here, we employed an α-hemolysin nanopore as a single molecule tool to investigate the self-assembly supramolecular oligomers of bis( p -sulfonatocalix[4]arene) ( bis SC4) and bis(methylviologen) ( bis MV 4+ ). The self-assembly of supramolecular oligomers could be dynamic monitored at single molecule level. The association constant between bis SC4 and bis MV 4+ was calculated based on current blockage frequencies at the single molecule level. This work provides a complementary method to characterize the self-assembly oligomers with low molecular weight in solution.
Key concepts: Supramolecular chemistry, Self-assembly, Molecule, Nanopore, Supramolecular assembly, Chemistry, Materials science, Nanotechnology