明胶基蜂窝固体:制造、结构和性能

IF 3.2 4区 工程技术 Q2 CHEMISTRY, APPLIED
Virginia Martin Torrejon, Jim Song, Zhang Yu, Song Hang
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引用次数: 4

摘要

尽管大多数细胞聚合物是由热塑性塑料使用不同的发泡技术制成的,明胶和许多其他天然聚合物可以形成水凝胶,并通过各种技术将其转化为细胞固体,其中许多技术与传统的塑料发泡不同,因此它们的最终结构也不同。来自天然水凝胶的细胞固体是多孔材料,通常具有理想的性能组合,包括高比表面积,生化活性,以及隔热和隔音性能。在天然水凝胶中,明胶基多孔材料因其可获得性、生物相容性、生物可降解性和相对低廉的成本而被广泛探索。此外,明胶基细胞固体具有优异的性能,由于其在许多应用领域的潜力,目前正受到越来越多的科学研究,例如生物相容性细胞材料或生物泡沫,以促进废物处理。本文就明胶细胞固体的制备及其加工-性能-结构关系进行了综述。所涉及的制造技术包括气凝胶生产,机械发泡,发泡剂的使用,3D打印,静电纺丝和颗粒浸出方法。希望通过对其特性的评价,为选择工艺和优化加工条件,控制材料结构和性能,以满足成品的需要提供信息和指导。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Gelatin-based cellular solids: Fabrication, structure and properties
Although most cellular polymers are made from thermoplastics using different foaming technologies, gelatin and many other natural polymers can form hydrogels and convert them to cellular solids using various techniques, many of which differ from traditional plastic foaming, and so does their resulting structures. Cellular solids from natural hydrogels are porous materials that often exhibit a combination of desirable properties, including high specific surface area, biochemical activity, as well as thermal and acoustic insulation properties. Among natural hydrogels, gelatin-based porous materials are widely explored due to their availability, biocompatibility, biodegradability and relatively low cost. In addition, gelatin-based cellular solids have outstanding properties and are currently subject to increasing scientific research due to their potential in many applications, such as biocompatible cellular materials or biofoams to facilitate waste treatment. This article aims at providing a comprehensive review of gelatin cellular solids processing and their processing-properties-structure relationship. The fabrication techniques covered include aerogels production, mechanical foaming, blowing agents use, 3D printing, electrospinning and particle leaching methods. It is hoped that the assessment of their characteristics provides compiled information and guidance for selecting techniques and optimization of processing conditions to control material structure and properties to meet the needs of the finished products.
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来源期刊
Journal of Cellular Plastics
Journal of Cellular Plastics 工程技术-高分子科学
CiteScore
5.00
自引率
16.00%
发文量
19
审稿时长
3 months
期刊介绍: The Journal of Cellular Plastics is a fully peer reviewed international journal that publishes original research and review articles covering the latest advances in foamed plastics technology.
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