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Multicomponent phosphate invert glasses with improved processing

机译:改进了工艺的多组分磷酸盐倒置玻璃

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摘要

Owing to their structure of small phosphate units, phosphate invert glasses have high crystallisation tendencies, which make processing of the melt challenging. The aim was to improve their processing by (1) increasing the number of glass components and (2) incorporating intermediate oxides (TiO _2, MgO and ZnO). Glasses (P _2O _5-CaO-MgO-Na _2O) were produced by a melt-quench route. In series 1, TiO _2 was partially substituted for Na _2O, and the number of components was increased by partially substituting strontium for calcium, zinc for magnesium and potassium for sodium on a molar base. In series 2, the MgO + ZnO content in the multicomponent glass was varied between 0 and 20 mol% in exchange for CaO + SrO. Differential scanning calorimetry showed a significant increase of the processing window in the multicomponent glasses, explained by an increased energy barrier for crystallisation owing to increased entropy of mixing. The MgO + ZnO content also significantly improved the processing window from 117 K (0 mol% MgO + ZnO) to 185 K (20 mol%), owing to their large field strength. These results show that the processing of phosphate invert glasses for biomedical applications can be improved significantly by incorporating ions such as strontium or zinc which are also known to have therapeutic effects.
机译:磷酸盐反相玻璃由于其小的磷酸盐单元的结构而具有高结晶趋势,这使熔融物的加工具有挑战性。目的是通过(1)增加玻璃成分的数量和(2)掺入中间氧化物(TiO _2,MgO和ZnO)来改善其工艺。玻璃(P _2O _5-CaO-MgO-Na _2O)通过熔融淬火法制备。在系列1中,用摩尔基础上的锶部分替代钙,锌替代镁,钾替代钠,用TiO _2部分替代Na _2O,并增加了组分数量。在系列2中,多组分玻璃中的MgO + ZnO含量在0至20 mol%之间变化,以换取CaO + SrO。差示扫描量热法显示了多组分玻璃中加工窗口的显着增加,这可以解释为由于混合熵的增加而增加了结晶能垒。由于MgO + ZnO的场强较大,其加工窗口也从117 K(0 mol%MgO + ZnO)显着提高到185 K(20 mol%)。这些结果表明,通过掺入已知也具有治疗作用的离子如锶或锌,可以显着改善用于生物医学的磷酸盐倒置玻璃的加工。

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