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一种通用的溶剂替换策略,可将海藻酸盐水凝胶转化为机械强度高且透明的海藻酸盐共晶水凝胶,用于灵敏的应变传感器。

A universal solvent-replacement strategy to convert alginate hydrogels into mechanically strong and transparent alginate eutectogels for sensitive strain sensors.

机构信息

Key Laboratory of Air-driven Equipment of Zhejiang Province, College of Mechanical Engineering, Quzhou University, Quzhou 324000, China.

Key Laboratory of Air-driven Equipment of Zhejiang Province, College of Mechanical Engineering, Quzhou University, Quzhou 324000, China.

出版信息

Int J Biol Macromol. 2024 Jun;271(Pt 1):132789. doi: 10.1016/j.ijbiomac.2024.132789. Epub 2024 Jun 6.

Abstract

Eutectogels based on natural polymers have attracted significant attention as an alternative to easily dehydrated hydrogels and expensive ionogels in the development of flexible strain sensors. The feasibility of employing eutectogels derived from pure natural polymers could be greatly enhanced if their mechanical properties satisfy the requirements of applications. Herein, alginate eutectogels (AEs) with high mechanical properties (tensile strain 217 % and strength 2.26 MPa at fracture), and excellent transparency (over 90 %) are acquired via CaCl inducing ionic crosslinking and subsequent deep eutectic solvents (DESs, composed of glycerol and choline chloride) initiating physical crosslinking with a universal solvent- replacement strategy. Among them, sodium alginate, a natural polysaccharide polymer, is selected as representative supporting scaffolds and forms water-insoluble alginate hydrogels (AHs) in CaCl coagulation bath. The exchange of DESs with water of AHs not only restrengthens the polymer network by physical crosslinking, but also endows the obtained AEs with long-term solvent retention and high temperature resistance. In addition, the AEs not only have high reliability but also exhibit better linear sensitivity in a wide strain range (0-200 %). In particular, the AEs display multiple sensitivity to stretching, bending, and human motions, demonstrating feasibility as sensitive strain sensors.

摘要

基于天然聚合物的低共熔凝胶作为一种替代易脱水水凝胶和昂贵离子凝胶的材料,在柔性应变传感器的开发中引起了广泛关注。如果纯天然聚合物衍生的低共熔凝胶的机械性能满足应用要求,那么它们的应用可行性将大大提高。本文通过 CaCl 诱导的离子交联和随后的深共晶溶剂(DESs,由甘油和氯化胆碱组成)引发的通用溶剂置换策略,获得了具有高机械性能(拉伸应变 217%,断裂强度 2.26 MPa)和优异透明度(超过 90%)的藻酸盐低共熔凝胶(AEs)。其中,天然多糖聚合物海藻酸钠被选为代表性的支撑支架,并在 CaCl 凝固浴中形成不溶于水的藻酸盐水凝胶(AHs)。DESs 与 AHs 中的水的交换不仅通过物理交联增强了聚合物网络,而且赋予所得 AEs 长期的溶剂保持性和耐高温性。此外,AEs 不仅具有高可靠性,而且在宽应变范围内(0-200%)表现出更好的线性灵敏度。特别是,AEs 对拉伸、弯曲和人体运动表现出多种灵敏度,显示出作为敏感应变传感器的可行性。

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