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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Bioactive glasses containing Au nanoparticles. Effect of calcination temperature on structure, morphology, and surface properties.
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Bioactive glasses containing Au nanoparticles. Effect of calcination temperature on structure, morphology, and surface properties.

机译:含有金纳米粒子的生物活性玻璃。煅烧温度对结构,形态和表面性质的影响。

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摘要

Bioactive glasses containing gold nanoparticles (AuNPs) have been synthesized via the sol-gel route using HAuCl(4) x 3 H(2)O as gold precursor. The formation process of AuNPs was studied as a function of the thermal treatment, which induces nucleation of Au particles and influences their nature, optical properties, shape, size, and distribution. The physicochemical characterization indicates that the sample treated at 600 degrees C presents the best characteristics to be used as a bioactive material, namely high surface area, high amount of AuNPs located at the glass surface, presence of micropores, and abundant surface OH groups. In the case of samples either aged at 60 degrees C or calcined at 150 degrees C, AuNPs just begin their formation, and at this stage the gel is not completely polymerized and dried yet. A thermal treatment at higher temperatures (900 degrees C) causes the aggregation of AuNPs, forming "AuMPs" (i.e., Au microparticles) in a densified glass-ceramic material with low surface area, absence of pores, and low number of surface OH groups. These features induce in the glass-ceramic materials treated at high-temperatures a lower bioactivity (evidenced by SBF reaction), as compared with that exhibited by the glass samples treated at 600 degrees C.
机译:使用HAuCl(4)x 3 H(2)O作为金前体,通过溶胶-凝胶路线合成了包含金纳米颗粒(AuNPs)的生物活性玻璃。研究了AuNPs的形成过程与热处理的关系,该过程会诱导Au颗粒成核并影响其性质,光学性质,形状,尺寸和分布。物化特性表明,在600摄氏度下处理的样品具有最佳的特性,可以用作生物活性材料,即高表面积,位于玻璃表面的大量AuNPs,存在微孔和丰富的表面OH基团。对于在60摄氏度下老化或在150摄氏度下煅烧的样品,AuNP才刚刚开始形成,在这一阶段,凝胶尚未完全聚合并干燥。在较高温度(900摄氏度)下进行热处理会导致AuNP聚集,从而在低表面积,无孔且表面OH基团数量少的致密化玻璃陶瓷材料中形成“ AuMP”(即Au微粒) 。与在600℃下处理的玻璃样品所表现出的生物活性相比,这些特征在高温下处理的玻璃陶瓷材料中具有较低的生物活性(通过SBF反应证明)。

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