Back to Search Start Over

Multi-scale simulations of apatite–collagen composites: from molecules to materials

Authors :
Dirk Zahn
Source :
Frontiers of Materials Science. 11:1-12
Publication Year :
2017
Publisher :
Springer Science and Business Media LLC, 2017.

Abstract

We review scale-bridging simulation studies for the exploration of atomicto-meso scale processes that account for the unique structure and mechanic properties of apatite-protein composites. As the atomic structure and composition of such complex biocomposites only partially is known, the first part (i) of our modelling studies is dedicated to realistic crystal nucleation scenarios of inorganic-organic composites. Starting from the association of single ions, recent insights range from the mechanisms of motif formation, ripening reactions and the self-organization of nanocrystals, including their interplay with growth-controlling molecular moieties. On this basis, (ii) reliable building rules for unprejudiced scale-up models can be derived to model bulk materials. This is exemplified for (enamel-like) apatite-protein composites, encompassing up to 106 atom models to provide a realistic account of the 10 nm length scale, whilst model coarsening is used to reach μm length scales. On this basis, a series of deformation and fracture simulation studies were performed and helped to rationalize biocomposite hardness, plasticity, toughness, self-healing and fracture mechanisms. Complementing experimental work, these modelling studies provide particularly detailed insights into the relation of hierarchical composite structure and favorable mechanical properties.

Details

ISSN :
20950268 and 2095025X
Volume :
11
Database :
OpenAIRE
Journal :
Frontiers of Materials Science
Accession number :
edsair.doi...........81cfd67c39e8cede6165ae21f656b629
Full Text :
https://doi.org/10.1007/s11706-017-0370-3