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Inorganic Salts Induce Thermally Reversible and Anti-Freezing Cellulose Hydrogels.

Xiong-Fei ZhangXiaofeng MaTing HouKechun GuoJiayu YinZhongguo WangLian ShuMing HeJianfeng Yao
Published in: Angewandte Chemie (International ed. in English) (2019)
Inspired by the anti-freezing mechanisms found in nature, ionic compounds (ZnCl2 /CaCl2 ) are integrated into cellulose hydrogel networks to enhance the freezing resistance. In this work, cotton cellulose is dissolved by a specially designed ZnCl2 /CaCl2 system, which endows the cellulose hydrogels specific properties such as excellent freeze-tolerance, good ion conductivity, and superior thermal reversibility. Interestingly, the rate of cellulose coagulation could be promoted by the addition of extra water or glycerol. This new type of cellulose-based hydrogel may be suitable for the construction of flexible devices used at temperature as low as -70 °C.
Keyphrases
  • ionic liquid
  • drug delivery
  • hyaluronic acid
  • aqueous solution
  • silver nanoparticles
  • tissue engineering
  • wound healing
  • drug release