Suppr超能文献

具有形状和功能多样性的复杂 3D 空心聚合物水凝胶的超分子构建。

Supramolecular Fabrication of Complex 3D Hollow Polymeric Hydrogels with Shape and Function Diversity.

机构信息

Key Laboratory of Marine Materials and Related Technologies, Zhejiang Key Laboratory of Marine Materials and Protective Technologies, Ningbo Institute of Material Technology and Engineering , Chinese Academy of Sciences , Ningbo 315201 , China.

Department of Polymer Materials, College of Materials Science and Engineering , Shanghai University , Nanchen Road 333 , Shanghai 200444 , China.

出版信息

ACS Appl Mater Interfaces. 2019 Dec 26;11(51):48564-48573. doi: 10.1021/acsami.9b17440. Epub 2019 Dec 12.

Abstract

Inspired by the high importance of hollow structures in nature such as blood vessels and bamboos in matter transportation, properties enhancement, or even survival of living creatures, the creation of hollow materials remains of considerable interest. However, constructing hollow unique living-like soft and wet polymeric hydrogels with desirable structures and functionalities is still a big challenge. Here, we reported a robust and effective strategy to fabricate complex three-dimensional (3D) hollow polymeric hydrogel with designed shape and function diversity on the basis of supramolecular interactions. By placing a Ca included gelatin core into the solution of alginate, hydrogel shell could be formed along with the shape of the gelatin core via coordination between alginate chains and Ca diffused from gelatin. The hollow hydrogel could finally be obtained by dissolving the gelatin core. Various complex 3D hollow structures could be achieved by designing/constructing assembled gelatin core as a building block with adjustable supramolecular metal coordination position and strength. Moreover, hollow hydrogels with function diversity could be developed by introducing functional polymers or nanoparticles into the hydrogel wall. This work has made important progress in developing hollow polymeric hydrogel with desirable structures, shapes, and various functional applications including soft actuators and chemical reaction containers.

摘要

受自然界中空结构(如血管和竹子在物质运输、性能增强甚至生物生存中的重要性的启发)的启发,中空材料的制备仍然具有相当大的意义。然而,构建具有理想结构和功能的独特的仿生软湿聚合物水凝胶仍然是一个巨大的挑战。在这里,我们报道了一种基于超分子相互作用的制造具有设计形状和功能多样性的复杂三维(3D)中空聚合物水凝胶的强大而有效的策略。通过将包含 Ca 的明胶核放入藻酸盐溶液中,通过藻酸盐链与从明胶中扩散出来的 Ca 之间的配位,可以在明胶核的形状周围形成水凝胶壳。最后,通过溶解明胶核可以得到中空水凝胶。通过设计/构建组装好的明胶核作为具有可调超分子金属配位位置和强度的构建块,可以实现各种复杂的 3D 中空结构。此外,通过将功能性聚合物或纳米粒子引入水凝胶壁中,可以开发具有多种功能的中空水凝胶。这项工作在开发具有理想结构、形状和各种功能应用(包括软致动器和化学反应容器)的中空聚合物水凝胶方面取得了重要进展。

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