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高吸水性核壳复合材料:合成、设计及应用综述

Superabsorbent Core/Shell Composite Materials: A Review on Synthesis, Design and Applications.

作者信息

Pastrafidou Maria, Vouvoudi Evangelia C, Binas Vassilios, Kartsonakis Ioannis A

机构信息

Laboratory of Physical Chemistry, School of Chemistry, Aristotle University of Thessaloniki, GR-54124 Thessaloniki, Greece.

Laboratory of Polymers and Colours Chemisty and Technology, School of Chemistry, Aristotle University of Thessaloniki, GR-54124 Thessaloniki, Greece.

出版信息

Polymers (Basel). 2025 May 24;17(11):1461. doi: 10.3390/polym17111461.

Abstract

Superabsorbent core/shell composite materials are a type of advanced materials presenting enhanced water absorption and retention capabilities. The central core material can swell and absorb water covered by a shell that serves a specific function. The composition and functionality of each layer can be tailored to improve the material's performance. The core is typically fabricated from superabsorbent polymers such as sodium polyacrylate, poly(acrylic acid) or other hydrophilic materials. The shell can be either inorganic polymers or organic polymers such as poly(methyl methacrylate), biodegradable polymers, polysaccharides or other functionalized materials in order to enhance biodegradability, mechanical strength or responsiveness to stimuli (e.g., temperature, pH). These materials present enormous potential to address issues for versatile applications in various fields, including biomedical applications, hygiene products and agriculture, due to their tailored structure. The common synthesis techniques for these advanced materials are emulsion polymerization, in situ polymerization, suspension polymerization with respect to the core material, layer-by-layer assembly and the sol-gel technique with respect to the shell formation. The techniques that are usually utilized for the characterization of the aforementioned materials and the validation of their functionalities are based on thermal analysis, morphology studies and swelling behavior and water retention and release mechanical properties, respectively. This review offers an in-depth examination of recent advancements in synthesis methods, structural engineering approaches and emerging applications of superabsorbent core/shell composites, highlighting the critical importance of material design in boosting their performance and broadening their practical use. Finally, special attention is devoted to the future perspectives of superabsorbent core/shell composites, exploring potential innovations in material design and multifunctionality. Emerging trends such as stimuli-responsive behavior, sustainability and scalability are discussed as key factors for next-generation applications. The review also outlines challenges and opportunities that could guide future research and industrial implementation.

摘要

超吸水性核壳复合材料是一类具有增强吸水和保水能力的先进材料。中心核材料能够膨胀并吸收被具有特定功能的壳所覆盖的水。每层的组成和功能都可以进行定制,以提高材料的性能。核通常由超吸水性聚合物制成,如聚丙烯酸钠、聚丙烯酸或其他亲水性材料。壳可以是无机聚合物或有机聚合物,如聚甲基丙烯酸甲酯、可生物降解聚合物、多糖或其他功能化材料,以提高生物降解性、机械强度或对刺激(如温度、pH值)的响应性。由于其定制的结构,这些材料在解决包括生物医学应用、卫生用品和农业在内的各个领域的通用应用问题方面具有巨大潜力。这些先进材料的常见合成技术包括针对核材料的乳液聚合、原位聚合、悬浮聚合,以及针对壳形成的逐层组装和溶胶-凝胶技术。通常用于表征上述材料及其功能验证的技术分别基于热分析、形态学研究以及溶胀行为、保水和释水力学性能。本综述深入探讨了超吸水性核壳复合材料在合成方法、结构工程方法和新兴应用方面的最新进展,强调了材料设计在提高其性能和扩大其实际应用方面的关键重要性。最后,特别关注超吸水性核壳复合材料的未来前景,探索材料设计和多功能性方面的潜在创新。讨论了刺激响应行为、可持续性和可扩展性等新兴趋势,将其作为下一代应用的关键因素。该综述还概述了可能指导未来研究和工业实施的挑战和机遇。

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