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利用逆莱顿弗罗斯特效应制备大孔冷冻凝胶颗粒的方法的多功能性。

Versatility of the Preparation Method for Macroporous Cryogel Particles Utilizing the Inverse Leidenfrost Effect.

作者信息

Takase Hayato, Watanabe Nozomi, Shiomori Koichiro, Okamoto Yukihiro, Matsune Hideki, Umakoshi Hiroshi

机构信息

Division of Chemical Engineering, Graduate School of Engineering Science, Osaka University, 1-3 Machikaneyama-cho, Toyonaka, Osaka560-8531, Japan.

Department of Applied Chemistry, University of Miyazaki, 1-1 Gakuenkibanadai-nishi, Miyazaki899-2192, Japan.

出版信息

ACS Omega. 2022 Dec 19;8(1):829-834. doi: 10.1021/acsomega.2c06197. eCollection 2023 Jan 10.

Abstract

We have investigated the versatility of a two-step preparation method, without a detergent, that combines both the inverse Leidenfrost effect and the cryogelation technique by using the macroporous particles of different kinds of monomers (four vinyl monomers) or a natural polymer (agarose). First, the precursor of polymers was dropped into liquid nitrogen to prepare the spherical frozen droplet by the inverse Leidenfrost effect. Second, the frozen droplets were cryo-polymerized at the frozen temperature; then, cryogel particles were prepared after thawing. Subsequently, the basic characteristics of the macroporous polymer particles obtained above were compared, focusing on the appearances, porous morphologies, and mechanical properties. It was found that the similar polymer particles could be obtained by the two-step preparation method, while there was a slight difference in their characteristics, depending on the type of monomers. Especially for the mechanical properties, the cryogel particles of the hydrophilic polymer exhibited a shape memory function with sponge-like elasticity, whereas the hydrophobic polymer particles were observed to be cracked after compression (i.e., no shape memory function). This work provides a versatile method of adopting various kinds of monomers and natural polymers for the preparation of macroporous particles. Hence, the method possibly has a potential to prepare and design "tailor-made" macroporous polymer particles for the application purpose.

摘要

我们研究了一种两步制备方法的多功能性,该方法无需使用洗涤剂,通过使用不同种类单体(四种乙烯基单体)或天然聚合物(琼脂糖)的大孔颗粒,将逆莱顿弗罗斯特效应和冷冻凝胶化技术结合起来。首先,将聚合物前驱体滴入液氮中,通过逆莱顿弗罗斯特效应制备球形冷冻液滴。其次,将冷冻液滴在冷冻温度下进行冷冻聚合;然后,解冻后制备冷冻凝胶颗粒。随后,对上述获得的大孔聚合物颗粒的基本特性进行了比较,重点关注其外观、多孔形态和机械性能。结果发现,通过两步制备方法可以获得相似的聚合物颗粒,但其特性存在细微差异,这取决于单体的类型。特别是在机械性能方面,亲水性聚合物的冷冻凝胶颗粒表现出具有海绵状弹性的形状记忆功能,而疏水性聚合物颗粒在压缩后会出现破裂(即无形状记忆功能)。这项工作提供了一种采用各种单体和天然聚合物制备大孔颗粒的多功能方法。因此,该方法可能有潜力为应用目的制备和设计“量身定制”的大孔聚合物颗粒。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9bba/9835782/48de79d96b01/ao2c06197_0002.jpg

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