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作 者:Yanyu Yang Decheng Wu
机构地区:[1]College of Materials Science and Engineering,Zhengzhou University,Zhengzhou,Henan,450001 China [2]Department of Biomedical Engineering,Southern University of Science and Technology,Shenzhen,Guangdong,518055 China
出 处:《Chinese Journal of Chemistry》2022年第17期2118-2134,共17页中国化学(英文版)
基 金:supported by the National Natural Science Foundation of China(Nos.52173144,51803188 and 21725403);the Excellent Youth Fund Project of Henan Natural Science Foundation(No.222300420079);the Shenzhen Science and Technology Innovation Commission(No.KQTD20200820113012029);the Key Research and Development and Promotion Projectsof Henan Province(No.212102210635).
摘 要:In spite of biological tissue-like peculiarity,multifarious functionalities and great application prospect,the low mechanics and soften behavior of hydrogels still retain a problem to be addressed for repetitive weight-bearing fields of flexible electronics,actuators,substitutions of soft tissues,wound dressing,wearable or implantable devices.Due to the distinct combination of diversity,reversibility and impressive disruption-reconstruction capacity,the chitosan physical cross-links can server as recoverable“sacrificial bonds”to construct multifarious energy-dissipative and anti-soften hydrogels and further broaden their diversified applications.In this review,we summarized the gelation mechanisms of chitosan physical networks and highlighted the chitosan physical network based hydrogels in rational design,construction principle,and structure and performance regulation.The recent progress in functional hydrogels for flexible electronics and biomaterials was systematically discussed.Overall,the review will provide comprehensive guidelines on the design principle,performance modulation and functionality construction of energy-dissipative and soften resistant hydrogels.
关 键 词:GELS Physicalcross-Links Mechanical properties FUNCTIONALITY Sensors
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