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Fluorapatite-Gelatine Nanocomposite Superstructures: New Insights into a Biomimetic System of High Complexity

Brickmann, Jürgen ; Paparcone, Raffaella ; Kokolakis, Simon ; Zahn, Dirk ; Duchstein, Patrick ; Carrillo-Cabrera, Wilder ; Simon, Paul ; Kniep, Rüdiger (2010)
Fluorapatite-Gelatine Nanocomposite Superstructures: New Insights into a Biomimetic System of High Complexity.
In: ChemPhysChem, 11 (9)
doi: 10.1002/cphc.201000232
Article, Bibliographie

Abstract

The beauty of complexity is reflected by the formation of hierarchical patterns on various length scales. The simulation of the fibril pattern inside a fluorapatite-gelatine nanocomposite superstructure reveals excellent agreement with TEM data and seems to be a key scenario for the development of biogenic composite shapes and architectures.

Item Type: Article
Erschienen: 2010
Creators: Brickmann, Jürgen ; Paparcone, Raffaella ; Kokolakis, Simon ; Zahn, Dirk ; Duchstein, Patrick ; Carrillo-Cabrera, Wilder ; Simon, Paul ; Kniep, Rüdiger
Type of entry: Bibliographie
Title: Fluorapatite-Gelatine Nanocomposite Superstructures: New Insights into a Biomimetic System of High Complexity
Language: English
Date: 21 June 2010
Journal or Publication Title: ChemPhysChem
Volume of the journal: 11
Issue Number: 9
DOI: 10.1002/cphc.201000232
Abstract:

The beauty of complexity is reflected by the formation of hierarchical patterns on various length scales. The simulation of the fibril pattern inside a fluorapatite-gelatine nanocomposite superstructure reveals excellent agreement with TEM data and seems to be a key scenario for the development of biogenic composite shapes and architectures.

Uncontrolled Keywords: biomineralisation; composite materials; electrical dipole fields; matrix isolation; nanostructures
Divisions: 07 Department of Chemistry > Eduard Zintl-Institut > Physical Chemistry
07 Department of Chemistry
Date Deposited: 24 Jan 2012 14:58
Last Modified: 05 Mar 2013 09:57
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