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多糖气凝胶的最新进展:合成、应用及未来展望

Recent Progress in Polysaccharide Aerogels: Their Synthesis, Application, and Future Outlook.

作者信息

Muhammad Arbanah, Lee Dabin, Shin Yonghun, Park Juhyun

机构信息

Department of Intelligent Energy and Industry, School of Chemical Engineering and Materials Science, Chung-Ang University, Seoul 06974, Korea.

出版信息

Polymers (Basel). 2021 Apr 20;13(8):1347. doi: 10.3390/polym13081347.

Abstract

Porous polysaccharides have recently attracted attention due to their porosity, abundance, and excellent properties such as sustainability and biocompatibility, thereby resulting in their numerous applications. Recent years have seen a rise in the number of studies on the utilization of polysaccharides such as cellulose, chitosan, chitin, and starch as aerogels due to their unique performance for the fabrication of porous structures. The present review explores recent progress in porous polysaccharides, particularly cellulose and chitosan, including their synthesis, application, and future outlook. Since the synthetic process is an important aspect of aerogel formation, particularly during the drying step, the process is reviewed in some detail, and a comparison is drawn between the supercritical CO and freeze drying processes in order to understand the aerogel formation of porous polysaccharides. Finally, the current applications of polysaccharide aerogels in drug delivery, wastewater, wound dressing, and air filtration are explored, and the limitations and outlook of the porous aerogels are discussed with respect to their future commercialization.

摘要

多孔多糖由于其孔隙率、丰富性以及诸如可持续性和生物相容性等优异性能,近年来受到了关注,从而导致其有众多应用。近年来,由于纤维素、壳聚糖、几丁质和淀粉等多糖在制造多孔结构方面具有独特性能,将其用作气凝胶的研究数量有所增加。本综述探讨了多孔多糖,特别是纤维素和壳聚糖的最新进展,包括它们的合成、应用和未来展望。由于合成过程是气凝胶形成的一个重要方面,特别是在干燥步骤中,因此对该过程进行了较为详细的综述,并对超临界CO₂和冷冻干燥过程进行了比较,以便了解多孔多糖的气凝胶形成。最后,探讨了多糖气凝胶在药物递送、废水处理、伤口敷料和空气过滤方面的当前应用,并就多孔气凝胶未来商业化的局限性和前景进行了讨论。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c58c/8074296/022405d0aefb/polymers-13-01347-g001.jpg

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