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  1. Research Outputs

New Insight into Mixing Fluoride and Chloride in Bioactive Silicate Glasses

Academic Article
Publication Date:
2018
Short description:
New Insight into Mixing Fluoride and Chloride in Bioactive Silicate Glasses / Chen, Xiaojing; Chen, Xiaohui; Pedone, Alfonso; Apperley, David; Hill, Robert G.; Karpukhina, Natalia. - In: SCIENTIFIC REPORTS. - ISSN 2045-2322. - 8:1(2018), pp. 1-10. [10.1038/s41598-018-19544-2]
abstract:
Adding fluoride into bioactive glasses leads to fluorapatite formation and a decrease in glass transition temperature. Recently, chloride has been introduced into glasses as an alternative to fluoride. The presence of the large chloride ion lowers glass crystallisation tendency and increases glass molar volume, which effectively facilitates glass degradation and bone-bonding apatite-like layer formation. However, there is no information regarding the effect of mixing fluoride and chloride on the glass structure and properties. This study aims to synthesize mixed fluoride and chloride containing bioactive glasses; investigate the structural role of fluoride and chloride and their effects on glass properties. The chloride content measurements reveal that 77-90% of chloride was retained in these Q2type glasses. Glass transition temperature reduced markedly with an increase in CaX2(X = F + Cl) content, while the glass molar volume increased.29Si MAS-NMR results show that the incorporation of mixed fluoride and chloride did not cause significant change in the polymerization of the silicate network and no detectable concentration of Si-F/Cl bands were present. This agrees with19F NMR spectra showing that F existed as F-Ca(n) species.
Iris type:
Articolo su rivista
Keywords:
Multidisciplinary
List of contributors:
Chen, Xiaojing; Chen, Xiaohui; Pedone, Alfonso; Apperley, David; Hill, Robert G.; Karpukhina, Natalia
Authors of the University:
PEDONE Alfonso
Handle:
https://iris.unimore.it/handle/11380/1152433
Full Text:
https://iris.unimore.it//retrieve/handle/11380/1152433/179928/art93.pdf
Published in:
SCIENTIFIC REPORTS
Journal
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URL

www.nature.com/srep/index.html
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