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聚合物控制的独特矿物超结构的结晶。

Polymer-controlled crystallization of unique mineral superstructures.

机构信息

Division of Nanomaterials and Chemistry, Hefei National Laboratory for Physical Sciences at the Microscale, Department of Chemistry, University of Science and Technology of China, Hefei, Anhui 230026, P. R. China.

出版信息

Adv Mater. 2010 Jan 26;22(4):540-5. doi: 10.1002/adma.200901964.

Abstract

The origin of complex superstructures of biomaterials in biological systems and the amazing self-assembly mechanisms of their emergence have attracted a great deal of attention recently. Mimicking nature, diverse kinds of hydrophilic polymers with different functionalities and organic insoluble matrices have been designed for the morphogenesis of inorganic crystals. In this Research News, emerging new strategies for morphogenesis and controlled crystal growth of minerals, that is, selective adsorption and mesoscale transformation for highly ordered superstructures, the combination of a synthetic hydrophilic polymer with an insoluble matrix, a substrate, or the air/solution interface, and controlled crystallization in a mixed solvent are highlighted. It is shown that these new strategies can be even further extended to morphogenesis and controlled crystallization of diverse inorganic or inorganic-organic hybrid materials with structural complexity, structural specialties, and improved functionalities.

摘要

生物体系中生物材料复杂超结构的起源及其令人惊叹的自组装机制最近引起了广泛关注。为了模拟自然界,人们设计了具有不同功能的各种亲水聚合物和有机不溶性基质,用于无机晶体的形态发生。在这篇研究新闻中,重点介绍了用于矿物质形态发生和控制晶体生长的新兴新策略,即高度有序超结构的选择性吸附和介观转化、合成亲水聚合物与不溶性基质、基底或空气/溶液界面的结合,以及在混合溶剂中的控制结晶。结果表明,这些新策略甚至可以进一步扩展到具有结构复杂性、结构特殊性和改进功能的各种无机或无机-有机杂化材料的形态发生和控制结晶。

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