Aneta Zima
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Articles (19)
Physicochemical Properties of Inorganic and Hybrid Hydroxyapatite-Based Granules Modified with Citric Acid or Polyethylene Glycol
This study delves into the physicochemical properties of inorganic hydroxyapatite (HAp) and hybrid hydroxyapatite–chitosan (HAp-CTS) granules, also gold-enriched, which can be used as aggregates in biomicroconcrete-type materials. The impact of granules’ surface modifications with citric acid (CA) or polyethylene glycol (PEG) was assessed. Citric acid modification induced increased specific surface area and porosity in inorganic granules, contrasting with reduced parameters in hybrid granules. PEG modification resulted in a slight increase in specific surface area for inorganic granules and a substantial rise for hybrid granules with gold nanoparticles. Varied effects on open porosity were observed based on granule type. Microstructural analysis revealed increased roughness for inorganic granules post CA modification, while hybrid granules exhibited smoother surfaces. Novel biomicroconcretes, based on α-tricalcium phosphate (α-TCP) calcium phosphate cement and developed granules as aggregates within, were evaluated for compressive strength. Compressive strength assessments showcased significant enhancement with PEG modification, emphasizing its positive impact. Citric acid modification demonstrated variable effects, depending on granule composition. The incorporation of gold nanoparticles further enriched the multifaceted approach to enhancing calcium phosphate-based biomaterials for potential biomedical applications. This study demonstrates the pivotal role of surface modifications in tailoring the physicochemical properties of granules, paving the way for advanced biomicroconcretes with improved compressive strength for diverse biomedical applications.
Year:
2024
Collaborators (14)
Małgorzata Krok-Borkowicz
assistant professor, scientist
AGH University of Science and Technology
Tomasz Witko
Polska Akademia Nauk Instytut Fizyki
Małgorzata Witko
Jerzy Haber Institute of Catalysis and Surface Chemistry, Polish Academy of Sciences
Annett Dorner-Reisel
Professor & Head of Materials & Raman-, Tribology Laboratory
Schmalkalden University of Applied Sciences
Ewelina Cichoń
Jerzy Haber Institute of Catalysis and Surface Chemistry, Polish Academy of Sciences
Joanna Czechowska
Assistant Professor
AGH University of Science and Technology
Konstantinos Raftopoulos
Assistant Professor (adiunkt naukowy)
Politechnika Krakowska im Tadeusza Kościuszki
Sarah Allinson
Professor at Lancaster University
University of Lancaster
Elżbieta Pamuła
Professor with Academic Title
AGH University of Science and Technology
Anna Ślósarczyk
AGH University of Science and Technology
Martyna Seta
Assistant Professor
Medical University of Warsaw
Katarzyna Haraźna
Postdoctoral researcher/Assistant Professor
Cracow University of Technology
Iwona Kwiecień
Silesian University of Technology
Maciej Guzik
Jerzy Haber Institute of Catalysis and Surface Chemistry, Polish Academy of Sciences

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