2023Advanced MaterialsOpen access

Formation of Amorphous Iron‐Calcium Phosphate with High Stability (Adv. Mater. 33/2023)

Song Chen, Dachuan Liu, Le Fu, Bing Ni, Zongkun Chen, Jennifer Knaus, Elena V. Sturm, Bohan Wang, Håvard Jostein Haugen, Hongji Yan, Helmut Cölfen, Bin Li

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Abstract

Biomineralization In article number 2301422, Song Chen, Helmut Cölfen, Bin Li, and co-workers report a novel and simple way to synthesize amorphous iron-calcium phosphate (Fe-ACP) particles with homogenous iron distribution and high stability in aqueous media. Their application yields calcium iron phosphate ceramics with superior mechanical strength and acid resistance. This presents a potential role in biomineralization and to fabricate acid-resistant high-performance bioceramics for bone and dental applications.

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Biomineralization In article number 2301422, Song Chen, Helmut Cölfen, Bin Li, and co-workers report a novel and simple way to synthesize amorphous iron-calcium phosphate (Fe-ACP) particles with homogenous iron distribution and high stability in aqueous media. Their application yields calcium iron phosphate ceramics with superior mechanical strength and acid resistance. This presents a potential role in biomineralization and to fabricate acid-resistant high-performance bioceramics for bone and dental applications.

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Available abstract

Biomineralization In article number 2301422, Song Chen, Helmut Cölfen, Bin Li, and co-workers report a novel and simple way to synthesize amorphous iron-calcium phosphate (Fe-ACP) particles with homogenous iron distribution and high stability in aqueous media. Their application yields calcium iron phosphate ceramics with superior mechanical strength and acid resistance. This presents a potential role in biomineralization and to fabricate acid-resistant high-performance bioceramics for bone and dental applications.

Key concepts: Biomineralization, Amorphous calcium phosphate, Materials science, Calcium, Amorphous solid, Phosphate, Chemical engineering, Chemical stability

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