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通过氢键溶解和共价交联协同策略构建具有三维分级孔网络结构的壳聚糖/海藻酸盐气凝胶用于热管理系统。

Construction of chitosan/alginate aerogels with three-dimensional hierarchical pore network structure via hydrogen bonding dissolution and covalent crosslinking synergistic strategy for thermal management systems.

机构信息

School of Textile and Material Engineering, Dalian Polytechnic University, Dalian 116034, PR China.

School of Textile and Material Engineering, Dalian Polytechnic University, Dalian 116034, PR China; State Key Laboratory of Bio-Fibers and Eco-textiles, Qingdao University, Qingdao 266071, PR China.

出版信息

Int J Biol Macromol. 2024 Aug;275(Pt 2):133367. doi: 10.1016/j.ijbiomac.2024.133367. Epub 2024 Jun 30.

DOI:10.1016/j.ijbiomac.2024.133367
PMID:38945720
Abstract

To replace traditional petrochemical-based thermal insulation materials, in this work, the chitosan (CHI)/alginate (ALG) (CA) aerogels with three-dimensional hierarchical pore network structure were constructed by compositing CHI and ALG using a synergistic strategy of hydrogen bonding dissolution and covalent crosslinking. The structure and properties were further regulated by crosslinking the CA aerogels with epichlorohydrin (ECH). The CA aerogels exhibited various forms of covalent crosslinking, hydrogen bonding and electrostatic interactions, with hydrogen bonding content reaching 79.12 %. The CA aerogels showed an excellent three-dimensional hierarchical pore network structure, with an average pore size minimum of 15.92 nm. The structure regulation of CA aerogels obtained excellent compressive properties, with an increase of stress and strain by 137.61 % and 45.05 %, which can support a heavy object 5000 times its weight. Additionally, CA aerogels demonstrate excellent thermal insulation properties and low thermal conductivity, comparable to commercially available insulation materials. More importantly, CA aerogels have good cyclic insulation stability and thermal properties, and they have a flame retardancy rating of V-0, which shows the stability of insulation properties and excellent safety. CA aerogels provide new ideas for the development of biomass thermal insulation materials and are expected to be candidates for thermal management applications.

摘要

为了替代传统的基于石油化工的隔热材料,在这项工作中,通过氢键溶解和共价交联的协同策略,将壳聚糖(CHI)/海藻酸钠(ALG)(CA)气凝胶构建成具有三维分级孔网络结构。通过用表氯醇(ECH)交联 CA 气凝胶进一步调节结构和性能。CA 气凝胶表现出各种形式的共价交联、氢键和静电相互作用,氢键含量达到 79.12%。CA 气凝胶具有优异的三维分级孔网络结构,平均孔径最小为 15.92nm。CA 气凝胶的结构调节获得了优异的压缩性能,其应力和应变分别增加了 137.61%和 45.05%,可以支撑重物 5000 倍的重量。此外,CA 气凝胶还具有优异的隔热性能和低热导率,与市售的隔热材料相当。更重要的是,CA 气凝胶具有良好的循环隔热稳定性和热性能,其阻燃等级为 V-0,这表明了其隔热性能的稳定性和优异的安全性。CA 气凝胶为生物质隔热材料的发展提供了新的思路,有望成为热管理应用的候选材料。

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