4.7 Article

Novel chemically cross-linked chitosan-cellulose based ionogel with self-healability, high ionic conductivity, and high thermo-mechanical stability

期刊

CELLULOSE
卷 27, 期 9, 页码 5121-5133

出版社

SPRINGER
DOI: 10.1007/s10570-020-03144-3

关键词

Chemical ionogels; Chitosan; Cellulose; Self-healing; Schiff base reaction

资金

  1. National Science Foundation of China [21304029, 51425307]
  2. Natural Science Foundation of Hebei Province [B2017201019]
  3. Open Research Fund of CAS Key Laboratory of Engineering Plastics, Institute of Chemistry, Chinese Academy of Sciences

向作者/读者索取更多资源

Developing flexible electrochemical devices with high-performance electrolytes by using natural renewable polymer is of great significance for meeting green and sustainable energy requirements. Here, a new type of chemically cross-linked ionogel based on natural chitosan and cellulose with good self-healability has been designed by a two-step method in ionic liquid. The rheological and dynamic mechanical analysis tests revealed that the as-prepared ionogel exhibited excellent thermo-mechanical stability even when the temperature was as high as 150 degrees C. Furthermore, the obtained ionogels showed good frost resistance, and still could maintain excellent flexibility even when the temperature was as low as - 20 degrees C. More importantly, the ionogel showed superior room temperature ionic conductivity (up to 2.1 mS/cm) and retained high electrical performance over a temperature range from - 50 to 120 degrees C. Additionally, the ionogel was used as electrolyte for preparing flexible supercapacitors and showed good performance under high temperature and harsh mechanical conditions. Such an ionogel, based on natural polymers with robust mechanical properties, high ionic conductivity, self-healability, and wide working temperature range, could be very useful for next-generation sustainable electrochemical devices. [GRAPHICS] .

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