Abstract
Macroscopic pH-responsive self-assembly is successfully constructed by polyacrylamide(pAAm)-based gels carrying dansyl (Dns) and β-cyclodextrin (βCD) residues, which are represented as Dns-gel and βCD-gel, respectively. Dns-gel and βCD-gel assemble together at pH ≥ 4.0, but disassemble at pH ≤ 3.0. The adhesion strengths for pairs of Dns-gel/βCD-gel increase with increasing pH. The fluorescence study on the model system of pAAm modified with 1 mol% Dns moieties (pAAm/Dns) reveals that Dns residues are protonated at a lower pH, which results in the reduction in binding constant (K) for Dns residues and βCD. pH-Responsive macroscopic self-assembly based on molecular recognition is constructed using polyacrylamide-based gels carrying dansyl (Dns) and β-cyclodextrin (βCD) residues, which are represented as Dns-gel and βCD-gel. Dns-gel and βCD-gel assemble together at pH ≥ 4.0, but disassemble at pH ≤ 3.0. This is because Dns residues are protonated at lower pH, which no longer interact with βCD residues on the interface of gel assembly. Copyright © 2013 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim.
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Zheng, Y., Hashidzume, A., & Harada, A. (2013). PH-responsive self-assembly by molecular recognition on a macroscopic scale. Macromolecular Rapid Communications, 34(13), 1062–1066. https://doi.org/10.1002/marc.201300324
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