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Highly Conductive, Anti-Freezing Hemicellulose-Based Hydrogels Prepared via Deep Eutectic Solvents and Their Applications

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논문

Highly Conductive, Anti-Freezing Hemicellulose-Based Hydrogels Prepared via Deep Eutectic Solvents and Their Applications

학술지

Gels: open access physical and chemical gels journal

저자명

Hu, Lisong; Gao, Shishuai; Zhao, Lihui; Dai, Lili; Zhang, Daihui; Wang, Chunpeng; Fang, Xuezhi; Chu, Fuxiang

초록

<P>Hydrogels containing renewable resources, such as hemicellulose, have received a lot of attention owing to their softness and electrical conductivity which could be applied in soft devices and wearable equipment. However, traditional hemicellulose-based hydrogels generally exhibit poor electrical conductivity and suffer from freezing at lower temperatures owing to the presence of a lot of water. In this study, we dissolved hemicellulose by employing deep eutectic solvents (DESs), which were prepared by mixing choline chloride and imidazole. In addition, hemicellulose-based DES hydrogels were fabricated via photo-initiated reactions of acrylamide and hemicellulose with <I>N</I>, <I>N</I>&prime;-Methylenebisacrylamide as a crosslinking agent. The produced hydrogels demonstrated high electrical conductivity and anti-freezing properties. The conductivity of the hydrogels was 2.13 S/m at room temperature and 1.97 S/m at &#x2212;29 &deg;C. The hydrogel&rsquo;s freezing point was measured by differential scanning calorimetry (DSC) to be &#x2212;47.78 &deg;C. Furthermore, the hemicellulose-based DES hydrogels can function as a dependable and sensitive strain sensor for monitoring a variety of human activities.</P>

발행연도

2023

발행기관

MDPI

ISSN

2310-2861

9

9

페이지

pp.725

주제어

hemicellulose; deep eutectic solvents (DESs); anti-freezing; conductivity; hydrogels

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1 2023-12-11

논문; 2023-09-06

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