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纳米材料/纳米结构的仿生与受生物启发合成

Biomimetic and Bioinspired Synthesis of Nanomaterials/Nanostructures.

作者信息

Zan Guangtao, Wu Qingsheng

机构信息

Department of Chemistry, State Key Laboratory of Pollution Control and Resource Reuse, Tongji University, Shanghai, 200092, P. R. China.

School of Materials Science and Engineering, Tongji University, Shanghai, 200092, P. R. China.

出版信息

Adv Mater. 2016 Mar 16;28(11):2099-147. doi: 10.1002/adma.201503215. Epub 2016 Jan 5.

DOI:10.1002/adma.201503215
PMID:26729639
Abstract

In recent years, due to its unparalleled advantages, the biomimetic and bioinspired synthesis of nanomaterials/nanostructures has drawn increasing interest and attention. Generally, biomimetic synthesis can be conducted either by mimicking the functions of natural materials/structures or by mimicking the biological processes that organisms employ to produce substances or materials. Biomimetic synthesis is therefore divided here into "functional biomimetic synthesis" and "process biomimetic synthesis". Process biomimetic synthesis is the focus of this review. First, the above two terms are defined and their relationship is discussed. Next different levels of biological processes that can be used for process biomimetic synthesis are compiled. Then the current progress of process biomimetic synthesis is systematically summarized and reviewed from the following five perspectives: i) elementary biomimetic system via biomass templates, ii) high-level biomimetic system via soft/hard-combined films, iii) intelligent biomimetic systems via liquid membranes, iv) living-organism biomimetic systems, and v) macromolecular bioinspired systems. Moreover, for these five biomimetic systems, the synthesis procedures, basic principles, and relationships are discussed, and the challenges that are encountered and directions for further development are considered.

摘要

近年来,由于其无与伦比的优势,纳米材料/纳米结构的仿生与受生物启发合成已引起越来越多的关注。一般来说,仿生合成既可以通过模仿天然材料/结构的功能来进行,也可以通过模仿生物体用于产生物质或材料的生物过程来进行。因此,这里将仿生合成分为“功能仿生合成”和“过程仿生合成”。过程仿生合成是本综述的重点。首先,对上述两个术语进行定义并讨论它们之间的关系。接下来,汇编可用于过程仿生合成的不同层次的生物过程。然后,从以下五个角度系统地总结和综述过程仿生合成的当前进展:i)通过生物质模板的基本仿生系统,ii)通过软/硬复合膜的高级仿生系统,iii)通过液膜的智能仿生系统,iv)生物体仿生系统,以及v)大分子受生物启发系统。此外,针对这五个仿生系统,讨论了合成程序、基本原理和关系,并考虑了遇到的挑战和进一步发展的方向。

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