Liquid-crystalline calcium carbonate: biomimetic synthesis and alignment of nanorod calcite

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Abstract

Liquid-crystalline CaCO3 has been prepared for the first time. The nanorods of CaCO3 calcite are obtained by bio-inspired crystallization through aqueous colloidal precursors of amorphous CaCO3 stabilized by poly(acrylic acid). The synthesized calcite nanocrystals have well-tuned morphologies that are preferable for formation of liquid-crystalline phases in concentrated aqueous colloidal solution. The one-dimensional alignment of calcite crystals is achieved by mechanical shearing of the aqueous colloidal solution showing liquid-crystalline phases. These CaCO3-based liquid crystals formed by a self-organization process in mild conditions may have great potential for use as environmentally friendly materials.

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Nakayama, M., Kajiyama, S., Nishimura, T., & Kato, T. (2015). Liquid-crystalline calcium carbonate: biomimetic synthesis and alignment of nanorod calcite. Chemical Science, 6(11), 6230–6234. https://doi.org/10.1039/c5sc01820j

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