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孔结构材料的设计、制造与功能:从仿生到人工合成

Design, Manufacturing and Functions of Pore-Structured Materials: From Biomimetics to Artificial.

作者信息

Chen Weiwei, Gan Lin, Huang Jin

机构信息

Chongqing Key Laboratory of Soft-Matter Material Chemistry and Function Manufacturing, State Key Laboratory of Silkworm Genome Biology, School of Chemistry and Chemical Engineering, Southwest University, Chongqing 400715, China.

出版信息

Biomimetics (Basel). 2023 Mar 29;8(2):140. doi: 10.3390/biomimetics8020140.

Abstract

Porous structures with light weight and high mechanical performance exist widely in the tissues of animals and plants. Biomimetic materials with those porous structures have been well-developed, and their highly specific surfaces can be further used in functional integration. However, most porous structures in those tissues can hardly be entirely duplicated, and their complex structure-performance relationship may still be not fully understood. The key challenges in promoting the applications of biomimetic porous materials are to figure out the essential factors in hierarchical porous structures and to develop matched preparation methods to control those factors precisely. Hence, this article reviews the existing methods to prepare biomimetic porous structures. Then, the well-proved effects of micropores, mesopores, and macropores on their various properties are introduced, including mechanical, electric, magnetic, thermotics, acoustic, and chemical properties. The advantages and disadvantages of hierarchical porous structures and their preparation methods are deeply evaluated. Focusing on those disadvantages and aiming to improve the performance and functions, we summarize several modification strategies and discuss the possibility of replacing biomimetic porous structures with meta-structures.

摘要

具有轻质和高机械性能的多孔结构广泛存在于动植物组织中。具有这些多孔结构的仿生材料已得到充分发展,其高比表面积可进一步用于功能集成。然而,这些组织中的大多数多孔结构很难被完全复制,其复杂的结构-性能关系可能仍未被完全理解。促进仿生多孔材料应用的关键挑战在于找出分级多孔结构中的关键因素,并开发相匹配的制备方法来精确控制这些因素。因此,本文综述了制备仿生多孔结构的现有方法。然后,介绍了微孔、介孔和大孔对其各种性能(包括机械、电学、磁学、热学、声学和化学性能)已得到充分证实的影响。深入评估了分级多孔结构及其制备方法的优缺点。针对这些缺点并旨在提高性能和功能,我们总结了几种改性策略,并讨论了用超结构替代仿生多孔结构的可能性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d595/10123697/6c4a484fb9c6/biomimetics-08-00140-g001.jpg

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