Behrendt Florian, Gottschaldt Michael, Schubert Ulrich S
Laboratory of Organic Chemistry and Macromolecular Chemistry (IOMC), Friedrich Schiller University Jena, Humboldtstraße 10, 07743 Jena, Germany.
Jena Center for Soft Matter (JCSM), Friedrich Schiller University Jena, Philosophenweg 7, 07743 Jena, Germany.
Mater Horiz. 2024 Sep 30;11(19):4600-4637. doi: 10.1039/d4mh00315b.
Cryogels are polymeric materials with a sponge-like microstructure and have attracted significant attention in recent decades. Research has focused on their composition, fabrication techniques, characterization methods as well as potential or existing fields of applications. The use of functional precursors or functionalizing ligands enables the preparation of cryogels with desired properties such as biocompatibility or responsivity. They can also exhibit adsorptive properties or can be used for catalytical purposes. Although a very brief overview about several functional (macro-)monomers and functionalizing ligands has been provided by previous reviewers for certain cryogel applications, so far there has been no particular focus on the evaluation of the functionalization success and the characterization methods used. This review will provide a comprehensive overview of different characterization methods most recently used for the evaluation of cryogel functionalization. Furthermore, new functional (macro-)monomers and subsequent cryogel functionalization strategies are discussed, based on synthetic polymers, biopolymers and a combination of both. This review highlights the importance of the functionalization aspect in cryogel research in order to produce materials with tailored properties for certain applications.
冷冻凝胶是一种具有海绵状微观结构的聚合材料,近几十年来受到了广泛关注。研究集中在它们的组成、制备技术、表征方法以及潜在或现有的应用领域。使用功能性前体或功能化配体能够制备具有所需特性(如生物相容性或响应性)的冷冻凝胶。它们还可以表现出吸附特性或用于催化目的。尽管之前的综述针对某些冷冻凝胶应用提供了几种功能性(大分子)单体和功能化配体的简要概述,但到目前为止,尚未特别关注功能化成功与否的评估以及所使用的表征方法。本综述将全面概述最近用于评估冷冻凝胶功能化的不同表征方法。此外,还将基于合成聚合物、生物聚合物以及两者的组合,讨论新型功能性(大分子)单体和后续的冷冻凝胶功能化策略。本综述强调了功能化在冷冻凝胶研究中的重要性,以便制备出具有特定应用所需定制特性的材料。