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Synthesis and X-Ray Diffraction Analyses of Calcium Hydroxide Nanoparticles in Aqueous Suspension

机译:水性悬浮液中氢氧化钙纳米粒子的合成及X射线衍射分析

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Calcium hydroxide nanoparticles in aqueous suspensions (also called nanolime) were successfully employed in Cultural Heritage conservation thanks to the ability of favoring readhesion of the pictorial layer on original carbonatic substrates or allowing to a better superficial cohesion and protection of treated stones. In this work, we have synthesized nanolime particles in aqueous suspension by two different methods. The produced particles were characterized in the laboratory, in terms of structural and morphological features, by means of X-Ray diffraction powder (XRD) and by transmission electron microscopy (TEM), respectively. Nanoparticles were crystalline, regularly shaped, hexagonally plated and with side dimensions generally ranging from 300 nm to 30 nm or less. Crystal structure of nanolime particles directly in the aqueous suspension, has been also analyzed by synchrotron diffraction from X-ray synchrotron radiation (SR-XRD); data have been analyzed by means of the Rietveld method and we have investigated the structure of Ca(OH)2 particles in suspension in terms of cell parameters, atomic coordinates, bond lengths and angles.
机译:水性悬浮液中的氢氧化钙纳米颗粒(也称为纳米石灰)已成功地用于文化遗产保护中,这是由于其有利于图像层在原始碳质基材上的重新附着或能够更好地与表面粘合并保护处理过的石头,因此具有一定的应用能力。在这项工作中,我们通过两种不同的方法在水性悬浮液中合成了纳米石灰颗粒。在实验室中,分别通过X射线衍射粉末(XRD)和透射电子显微镜(TEM)在结构和形态特征方面对产生的颗粒进行了表征。纳米颗粒是结晶的,规则形状的,六边形镀的,且侧面尺寸通常在300 nm至30 nm或更小范围内。还通过X射线同步加速器辐射(SR-XRD)的同步加速器衍射分析了直接在水性悬浮液中的纳米石灰颗粒的晶体结构;数据已经通过Rietveld方法进行了分析,我们从细胞参数,原子坐标,键长和角度等方面研究了悬浮液中Ca(OH)2颗粒的结构。

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