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Biomimetic Extreme-Temperature- and Environment-Adaptable Hydrogels.

Dan ZhouFan ChenStephan Handschuh-WangTiansheng GanXiaohu ZhouXuechang Zhou
Published in: Chemphyschem : a European journal of chemical physics and physical chemistry (2019)
Recently, temperature-resistant hydrogels, hydrogels which are freezing- and dehydration-resistant, have garnered considerable attention in the scientific community as they extend the rage of application of hydrogels to arid and/or cold environments. Besides, these hydrogels exhibit tunable conductivity and mechanical performance while offering excellent biocompatibility and flexibility, making them interesting candidates for flexible and wearable electronics and (bio)sensors. Several biomimetic strategies were developed to fabricate anti-freezing and anti-dehydration hydrogels with a diversity of merits, such as high strain resistance and conductivity, even at sub-zero temperatures, and employed as (bio)sensors, electrodes, and energy-storage devices. This review summarizes the recent advances in the preparation and application of temperature-resistant hydrogels, indicates issues of the state-of-the-art hydrogels, and offers potential future research directions.
Keyphrases
  • tissue engineering
  • drug delivery
  • hyaluronic acid
  • drug release
  • extracellular matrix
  • wound healing
  • healthcare
  • mental health
  • quantum dots