Hydroxyapatite-Based Nanocomposites
Structure, Mechanics and New Methods
Springer
ISBN 978-3-032-12582-8
Standardpreis
Bibliografische Daten
Fachbuch
Buch. Hardcover
2026
Format (B x L): 15,5 x 23,5 cm
Verlag: Springer
ISBN: 978-3-032-12582-8
Weiterführende bibliografische Daten
Das Werk ist Teil der Reihe: Springer Series in Chemical Physics
Produktbeschreibung
The book explores the investigation of nanocrystal size of natural HA using X-ray diffraction, as well as the evaluation of an innovative technique for measuring the modulus of elasticity related to the atomic density of planes in unit cell and super cells of crystal lattices. It also examines the relationship between Young’s modulus and planar density in unit cells, super cells (2×2×2), and symmetry cells of cubic crystal lattices. Furthermore, the book explores the effect of calcination temperature on the mechanical and photophysical properties of CuI-doped HA, providing a deeper understanding of material stability under varying conditions.
By linking fundamental materials science with applied biomedical engineering, this book establishes a robust framework for the development of next-generation biomaterials. The combination of innovative synthesis techniques and advanced mechanical characterization offers practical insights to improve the longevity and performance of HA-based implants and scaffolds.
This book will be a valuable resource for researchers, engineers, and professionals in materials science, nanotechnology, and biomedical engineering. It will particularly benefit those working with bioactive materials, implant development, and mechanical characterization, as it provides cutting-edge methods for optimizing HA composites for clinical use.
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