首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Probing Cooperative Interactions of Tailor-Made Nucleation Surfaces and Macromolecules: A Bioinspired Route to Hollow Micrometer-Sized Calcium Carbonate Particles
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Probing Cooperative Interactions of Tailor-Made Nucleation Surfaces and Macromolecules: A Bioinspired Route to Hollow Micrometer-Sized Calcium Carbonate Particles

机译:探索量身定制的成核表面和大分子的相互作用:一种启发性的中空微米级碳酸钙颗粒的生物途径。

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摘要

It is well known that the formation of biominerals by living organisms is governed by the cooperation of soluble and insoluble macromolecules with peculiar interfacial properties.To date,most of the studies on mineralization processes involve model systems that account only for the existence of one organic matrix and thus disregard the interaction between the soluble and insoluble organic components that is crucial for a better understanding of the processes taking place at the inorganic-organic interface.We have set up a model system composed of a matrix surface,which is composed of a self-assembled monolayer (SAM) and a soluble component,poly(aspartic acid).It could be demonstrated that the phase selection of calcium carbonate and the morphology of the resulting particles are determined by the stabilization of amorphous precursor particles by the polymer and the interaction between polymer and SAM.The morphology of the hollow vaterite microspheres are reminiscent to a 3D analogue of the so-called "coffee-stain effect",where the transformation from a voluminous hydrated,amorphous material to a more dense crystalline material leads to the formation of hollow spheres from massive spherical microparticles.
机译:众所周知,活生物体的生物矿物的形成受具有独特界面特性的可溶性和不溶性大分子的协同作用所控制。迄今为止,大多数关于矿化过程的研究都涉及仅考虑一种有机基质存在的模型系统。因此忽略了可溶性和不溶性有机成分之间的相互作用,这对于更好地了解无机-有机界面处发生的过程至关重要。我们建立了一个由基质表面组成的模型系统,该模型表面由自组装的单分子膜(SAM)和可溶性组分聚天冬氨酸。可以证明,碳酸钙的相选择和所得颗粒的形貌是由聚合物对非晶态前体颗粒的稳定作用和相互作用决定的。空心球ate石微球的形态让人联想到3D类似物所谓的“咖啡污渍效应”,即从大量的水合无定形物质向致密的结晶物质的转变导致由球形大颗粒形成空心球。

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