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Controlled Synthesis of ZrO2 Nanoparticles with Tailored Size Morphology and Crystal Phases via Organic/Inorganic Hybrid Films

机译:通过有机/无机杂化薄膜可控制地合成尺寸形态和晶相定制的ZrO2纳米粒子

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摘要

In this investigation, well defined mesoporous zirconia nanoparticles (ZrO2 NPs) with cubic, tetragonal or monoclinic pure phase were synthesized via thermal recovery (in air) from chitosan (CS)- or polyvinyl alcohol (PVA)-ZrOx hybrid films, prepared using sol–gel processing. This facile preparative method was found to lead to an almost quantitative recovery of the ZrOx content of the film in the form of ZrO2 NPs. Impacts of the thermal recovery temperature (450, 800 and 1100 °C) and polymer type (natural bio-waste CS or synthetic PVA) used in fabricating the organic/inorganic hybrid films on bulk and surface characteristics of the recovered NPs were probed by means of X-ray diffractometry and photoelectron spectroscopy, FT-IR and Laser Raman spectroscopy, transmission electron and atomic force microscopy, and N2 sorptiometry. Results obtained showed that the method applied facilates control over the size (6–30 nm) and shape (from loose cubes to agglomerates) of the recovered NPs and, hence, the bulk crystalline phase composition and the surface area (144–52 m2/g) and mesopore size (23–10 nm) and volume (0.31–0.11 cm3/g) of the resulting zirconias.
机译:在这项研究中,通过热回收(在空气中)从壳聚糖(CS)-或聚乙烯醇(PVA)-ZrOx杂化膜中合成了定义明确的具有立方,四方或单斜晶纯相的介孔氧化锆纳米颗粒(ZrO2 NP)。 –凝胶加工。已发现这种简便的制备方法几乎可以定量回收ZrO2 NP形式的薄膜中ZrOx含量。探究了热回收温度(450、800和1100 C)和用于制造有机/无机杂化膜的聚合物类型(天然生物废物CS或合成PVA)对回收的NP的体积和表面特性的影响。 X射线衍射和光电子能谱,FT-IR和激光拉曼光谱,透射电子和原子力显微镜以及N2吸收法。获得的结果表明,所应用的方法有助于控制回收的NP的尺寸(6–30–nm)和形状(从松散的立方体到附聚物),因此,可以控制整体晶相组成和表面积(144-52 m < sup> 2 / g)和生成的氧化锆的中孔尺寸(23–10(nm)和体积(0.31–0.11cmcm 3 / g)。

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