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聚合物控制的、受生物启发的从水溶液中进行磷酸钙矿化

Polymer-controlled, bio-inspired calcium phosphate mineralization from aqueous solution.

作者信息

Schweizer Sylvia, Taubert Andreas

机构信息

Department of Chemistry, University of Basel, 4056 Basel, Switzerland.

出版信息

Macromol Biosci. 2007 Sep 11;7(9-10):1085-99. doi: 10.1002/mabi.200600283.

Abstract

Nowadays, the majority of the commercially available calcium phosphate materials is fabricated by 'classical' materials science approaches, i.e., from rather poorly defined slurries or from organic solvents, often at high temperatures and pressures. Bioinspired precipitation of inorganics with (polymeric) additives from aqueous solution, on the other hand, enables the synthesis of intriguing inorganic or organic/inorganic materials that are often much more closely related to biological structures. This article discusses approaches for the fabrication of bio-inspired calcium phosphate hybrid materials by precipitation from aqueous solution. The article focuses on polymers and related self-assembling structures for the design of CaP/organic hybrids and pure CaP with crystal structures and morphologies regulated by the respective additive.

摘要

如今,大多数市售的磷酸钙材料是通过“经典”材料科学方法制造的,即从定义相当不明确的浆料或有机溶剂中制造,通常是在高温高压下。另一方面,通过从水溶液中与(聚合物)添加剂进行仿生无机沉淀,可以合成出有趣的无机或有机/无机材料,这些材料通常与生物结构更为密切相关。本文讨论了通过从水溶液中沉淀来制造仿生磷酸钙杂化材料的方法。文章重点关注聚合物和相关的自组装结构,用于设计CaP/有机杂化物以及具有由各自添加剂调节的晶体结构和形态的纯CaP。

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