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Processing of highly porous bioglass monoliths by hydrothermal hot pressing

机译:通过水热热压加工高孔生物玻璃巨石

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? 2022Porous bioglass monoliths have been processed by hydrothermal hot pressing (HyHP) from sol-gel and melt-derived bioglass powders of composition (in mol ): SiO2–CaO–P2O5 (55.0-40.0-5.0) and SiO2–CaO–Na2O–P2O5 (47.2-26.4-23.8-2.6), respectively. An open porosity of >70 ever reached in 3D structures is reported for monoliths issued from sol-gel powders. Dissolution studies were performed in simulated body fluid (SBF) for 1–30 days. The monoliths were analysed using X-Ray Diffraction (XRD), Fourier Transform Infra-Red (FTIR) spectroscopy and Scanning Electron Microscopy (SEM) to observe the formation of an apatite-like layer and elemental concentration of SBF was evaluated using Inductively Coupled Plasma Optical Emission Spectroscopy (ICP-OES). A higher kinetics in the development of apatite layer was observed for sol-gel derived monoliths. This result is explained by the high surface areas of the nanosized sol-gel powders and the possibility of HyHP to create large porosity (mesoporous monoliths) and retain large surface areas. HyHP is also effective in processing 3D-bioglass structures with porosity gradient by co-sintering powders of different size.
机译:?2022多孔生物玻璃单体已通过水热热压(HyHP)从溶胶-凝胶和熔体衍生的生物玻璃粉末中加工而成,其组成(以mol %为单位):SiO2-CaO-P2O5(55.0-40.0-5.0)和SiO2-CaO-Na2O-P2O5(47.2-26.4-23.8-2.6)。据报道,溶胶-凝胶粉末产生的单体在 3D 结构中达到了 >70% 的开放孔隙率。溶出度研究在模拟体液 (SBF) 中进行 1-30 天。采用X射线衍射(XRD)、傅里叶变换红外光谱(FTIR)和扫描电子显微镜(SEM)对巨石进行分析,观察磷灰石状层的形成,并采用电感耦合等离子体发射光谱(ICP-OES)评估SBF的元素浓度。对于溶胶-凝胶衍生的单体,观察到磷灰石层发育的动力学更高。这一结果可以通过纳米溶胶-凝胶粉末的高表面积以及HyHP产生大孔隙率(介孔整体)和保持大表面积的可能性来解释。HyHP还可以通过共烧结不同尺寸的粉末,有效地加工具有孔隙率梯度的3D生物玻璃结构。

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