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生物成因和合成的高镁方解石综述。

Biogenic and synthetic high magnesium calcite - a review.

机构信息

Beijing National laboratory for Molecular Sciences (BNLMS), State Key Laboratory for Structural Chemistry of Unstable and Stable Species, College of Chemistry, Peking University, Beijing 100871, PR China.

Beijing National laboratory for Molecular Sciences (BNLMS), State Key Laboratory for Structural Chemistry of Unstable and Stable Species, College of Chemistry, Peking University, Beijing 100871, PR China.

出版信息

J Struct Biol. 2014 Jan;185(1):1-14. doi: 10.1016/j.jsb.2013.11.004. Epub 2013 Nov 26.

Abstract

Systematic studies on the Mg distributions, the crystal orientations, the formation mechanisms and the mechanical properties of biogenic high-Mg calcites in different marine organisms were summarized in detail in this review. The high-Mg calcites in the hard tissues of marine organisms mentioned generally own a few common features as follows. Firstly, the Mg distribution is not uniform in most of the minerals. Secondly, high-Mg calcite biominerals are usually composed of nanoparticles that own almost the same crystallographic orientations and thus they behave like single crystals or mesocrystals. Thirdly, the formation of thermodynamically unstable high-Mg calcites in marine organisms under mild conditions is affected by three key factors, that is, the formation of amorphous calcium (magnesium) carbonate precursor, the control of polymorph via biomolecules and the high Mg/Ca ratios in modern sea. Lastly, the existence of Mg ions in the Mg-containing calcite may improve the mechanical properties of biogenic minerals. Furthermore, the key progress in the synthesis of high-Mg calcites in the laboratory based on the formation mechanisms of the biogenic high-Mg calcites was reviewed. Many researchers have realized the synthesis of high-Mg calcites in the laboratory under ambient conditions with the help of intermediate amorphous phase, mixed solvents, organic/inorganic surfaces and soluble additives. Studies on the structural analysis and formation mechanisms of thermodynamically unstable biogenic high-Mg calcite minerals may shed light on the preparation of functional materials with enhanced mechanical properties.

摘要

本文详细综述了不同海洋生物体内生物成因高镁方解石的 Mg 分布、晶体取向、形成机制和力学性能的系统研究。海洋生物硬组织中的高镁方解石通常具有以下几个共同特征。首先,大多数矿物中的 Mg 分布不均匀。其次,高镁方解石生物矿通常由具有几乎相同晶体取向的纳米颗粒组成,因此它们表现为单晶或准晶体。第三,在温和条件下,受三种关键因素的影响,海洋生物中热力学不稳定的高镁方解石的形成,即无定形碳酸钙(镁)前体的形成、生物分子控制多型体以及现代海水中高 Mg/Ca 比值。最后,含镁方解石中 Mg 离子的存在可能提高生物矿的力学性能。此外,还综述了基于生物成因高镁方解石形成机制在实验室中合成高镁方解石的最新进展。许多研究人员借助中间非晶相、混合溶剂、有机/无机表面和可溶性添加剂,在常温常压条件下实现了高镁方解石的实验室合成。对方解石结构分析和热力学不稳定生物成因高镁方解石形成机制的研究,可能为制备具有增强力学性能的功能材料提供启示。

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