Assembly Pattern of Supramolecular Hydrogel Induced by Lower Critical Solution Temperature Behavior of Low-Molecular-Weight Gelator
Shuanggen Wu, Qiao Zhang, Yan Deng, Xing Li, Zheng Luo, Bo Zheng, Shengyi Dong
Abstract
Shuanggen Wu, Qiao Zhang, Yan Deng, Xing Li, Zheng Luo, Bo Zheng, Shengyi Dong
Abstract
Although the gelation process and lower critical solution temperature (LCST) behavior are well acknowledged in polymer systems, low-molecular-weight gelators (LMWGs) rarely display LCST behavior during supramolecular gelation. Herein, we report an LMWG system with LCST-type thermoresponsiveness and an LCST-triggered supramolecular gelation process. Temperature plays a crucial role in this system, not only affecting the LCST phase separation but also triggering the gelation process. The backbones (three-dimensional structures) of the resulting hydrogel are the hierarchical assemblies of the LMWG undergoing the LCST phase separation. Hence, the gelation of the LMWG is only realized when the gelation temperature is above the critical transition temperature ( T cloud ) of the LCST behavior, which is different from many supramolecular or polymeric hydrogel systems.
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Although the gelation process and lower critical solution temperature (LCST) behavior are well acknowledged in polymer systems, low-molecular-weight gelators (LMWGs) rarely display LCST behavior during supramolecular gelation. Herein, we report an LMWG system with LCST-type thermoresponsiveness and an LCST-triggered supramolecular gelation process. Temperature plays a crucial role in this system, not only affecting the LCST phase separation but also triggering the gelation process. The backbones (three-dimensional structures) of the resulting hydrogel are the hierarchical assemblies of the LMWG undergoing the LCST phase separation. Hence, the gelation of the LMWG is only realized when the gelation temperature is above the critical transition temperature ( T cloud ) of the LCST behavior, which is different from many supramolecular or polymeric hydrogel systems.
Key concepts: Lower critical solution temperature, Supramolecular chemistry, Chemistry, Polymer, Thermoresponsive polymers in chromatography, Chemical engineering, Phase (matter), Polymer chemistry