𝔖 Bobbio Scriptorium
✦   LIBER   ✦

Bioinspired Mineralization of Inorganics from Aqueous Media Controlled by Synthetic Polymers

✍ Scribed by Katarzyna Gorna; Rafael Muñoz-Espí; Franziska Gröhn; Gerhard Wegner


Book ID
102471841
Publisher
John Wiley and Sons
Year
2007
Tongue
English
Weight
452 KB
Volume
7
Category
Article
ISSN
1616-5187

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✦ Synopsis


Abstract

The formation of inorganic structures in nature is commonly controlled by biogenic macromolecules. The understanding of mineralization phenomena and the nucleation and growth mechanisms involved is still a challenge in science but also of great industrial interest. This article focuses on the formation and mineralization of two archetypical inorganic materials: zinc oxide and amorphous calcium carbonate (ACC). Zinc oxide is selected as a model compound to investigate the role that polymers play in mineralization. Most of the effort has been devoted to the investigation of the effects of double‐hydrophilic block and graft copolymers. Recent work has demonstrated that latex particles synthesized by miniemulsion polymerization, properly functionalized by various chemical groups, have similar effects to conventional block copolymers and are excellently suited for morphology control of ZnO crystals. Latex particles might serve as analogues of natural proteins in biomineralization. The second example presented, ACC, addresses the issue of whether this amorphous phase is an intermediate in the biomineralization of calcite, vaterite, or aragonite. Conditions under which amorphous calcium carbonate can be obtained as nanometer‐sized spheres as a consequence of a liquid–liquid phase segregation are presented. Addition of specific block copolymers allows control of the particle size from the micrometer to the submicrometer length scale. The physical properties of novel materials synthesized from concentrated solution and their potential applications as a filler of polymers are also discussed.

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