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  4. Steering of Crystal Cell Volumes in Apatites and Bioapatites
 
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Steering of Crystal Cell Volumes in Apatites and Bioapatites

Type
Journal article
Language
English
Date issued
2026
Author
Kuczumow, Andrzej
Lasota, Agnieszka
Gorzelak, Mieczysław
Wojtyła-Buciora, Paulina
Biliński, Przemysław
Bernatek, Małgorzata
Turżańska, Karolina
Olszewski, Jan
Dyndor, Przemysław
Jarzębski, Maciej 
Wieruszewski, Marek 
Jabłoński, Mirosław
Faculty
Wydział Nauk o Żywności i Żywieniu
Wydział Leśny i Technologii Drewna
PBN discipline
forestry
Journal
Molecules
ISSN
1420-3049
DOI
10.3390/molecules31040707
Web address
https://www.mdpi.com/1420-3049/31/4/707
Volume
31
Number
4
Pages from-to
art. 707
Abstract (EN)
The biological variability of apatites in different hard tissues of organisms was the starting point for this investigation. Materials such as whale rostrums, ganoine, and some fish bones were analyzed. It has been proven that different organisms select specific kinds of apatites for the construction of their hard organs at the level of the crystal cell. This probably results from the long-lasting adaptation of the construction to their environmental needs. The materials are characterized by the parameters Δd and ΔE, being the real and apparent deviations from Bragg’s dimension d and the energy of excitation in XRD—E. This study is based on previously published, verified results from a number of researchers and research groups. The derivation of expressions was possible due to an original approach to Bragg’s equation, finally finished in the reformulation of the law, which describes the interplay between the absolute value of the probing excitation energy E and the crystal cell’s internal volume V. It enabled the classification of apatite biomaterials in living and fossil organisms, as well as the classification of the apatite excretions. In addition, the following different possible modes of changes in Bragg’s dimension d were illustrated—spontaneous geometrical expansion, thermal action, pressurization, and single- and multiple-ion exchanges. The contributions of such expansions were estimated. We can steer the cell volume of apatites in various ways. It has been proven that the volume expansion is linearly coupled with the expansion of Bragg’s d parameter in the hexagonal system.
Keywords (EN)
  • apatite crystal volumes

  • energetics of apatite/bioapatite...

  • ΔE vs. Δd diagrams

  • Braggs’ dimensions

  • reformulation of Braggs’ law

License
cc-bycc-by CC-BY - Attribution
Open access date
February 18, 2026
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