首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Formation of a nanostructured layer on bioglass particles of different sizes immersed in tris-buffered solution. N-2 adsorption and HR-TEM/EDS analysis
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Formation of a nanostructured layer on bioglass particles of different sizes immersed in tris-buffered solution. N-2 adsorption and HR-TEM/EDS analysis

机译:浸在tris缓冲溶液中的不同大小的生物玻璃颗粒上形成纳米结构层。 N-2吸附和HR-TEM / EDS分析

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摘要

Morphological and structural variations of particles of Bioglass with two different grain sizes reacted in Tris-buffered solution were analyzed by means of N-2 adsorption/desorption at 77 K and HR-TEM/EDS. A remarkable increase in specific surface area (ssa) was observed after the first hour of dissolution. A plateau value corresponding to an increase of at least 2 orders of magnitude was reached after 2 days of dissolution. The ssa increase was faster for the smaller particle size sample, and the ratio between the ssa of the starting samples was not maintained during dissolution. Both micro- and mesopores were formed at different stages of the reaction for the two samples. Increasing ssa was also connected to the formation of a microcrystalline structure rich in Ca and P, as shown by TEM images. The segregation of both a SiO2-rich amorphous phase and a Ca/P-rich crystalline phase was observed after the first hour of dissolution. After 2 days of reaction, Ca/P-rich particles made of fine aciculate crystals were found either in close contact with SiO2 particles or deposited on a small SiO2-rich core. A preliminary analysis of TEM data showed the formation, together with hydroxy carbonate apatite, of different types of calcium phosphates not detectable by powder X-ray diffraction.
机译:在Tris缓冲溶液中反应的两种不同粒径的生物玻璃颗粒的形貌和结构变化,通过N-2在77 K和HR-TEM / EDS上的吸附/解吸来分析。在溶解的第一小时后,观察到比表面积(ssa)显着增加。溶解2天后达到了相当于增加至少2个数量级的平稳值。对于较小粒径的样品,ssa的增加更快,并且在溶解过程中未保持起始样品的ssa之间的比率。两种样品在反应的不同阶段均形成了微孔和中孔。 TEM图像显示,ssa的增加还与富含Ca和P的微晶结构的形成有关。在溶解的第一小时后,观察到富含SiO2的非晶相和富含Ca / P的结晶相的偏析。反应2天后,发现由细小的针状晶体制成的富含Ca / P的颗粒与SiO2颗粒紧密接触或沉积在小的SiO2富集核上。 TEM数据的初步分析表明,与粉末状碳酸钙一起形成的碳酸钙磷灰石无法通过粉末X射线衍射检测到。

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