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Solvent-Free Mechanochemical Synthesis of ZnO Nanoparticles by High-Energy Ball Milling of ε-Zn(OH)

机译:通过ε-Zn高能球磨的ZnO纳米粒子的无溶剂化学合成(OH)

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摘要

A detailed investigation is presented for the solvent-free mechanochemical synthesis of zinc oxide nanoparticles from ε-Zn(OH)2 crystals by high-energy ball milling. Only a few works have ever explored the dry synthetic route from ε-Zn(OH)2 to ZnO. The milling process of ε-Zn(OH)2 was done in ambient conditions with a 1:100 powder/ball mass ratio, and it produced uniform ZnO nanoparticles with sizes of 10–30 nm, based on the milling duration. The process was carefully monitored and the effect of the milling duration on the powder composition, nanoparticle size and strain, optical properties, aggregate size, and material activity was examined using XRD, TEM, DLS, UV-Vis, and FTIR. The mechanism for the transformation of ε-Zn(OH)2 to ZnO was studied by TGA and XPS analysis. The study gave proof for a reaction mechanism starting with a phase transition of crystalline ε-Zn(OH)2 to amorphous Zn(OH)2, followed by decomposition to ZnO and water. To the best of our knowledge, this mechanochemical approach for synthesizing ZnO from ε-Zn(OH)2 is completely novel. ε-Zn(OH)2 crystals are very easy to obtain, and the milling process is done in ambient conditions; therefore, this work provides a simple, cheap, and solvent-free way to produce ZnO nanoparticles in dry conditions. We believe that this study could help to shed some light on the solvent-free transition from ε-Zn(OH)2 to ZnO and that it could offer a new synthetic route for synthesizing ZnO nanoparticles.
机译:通过高能量球铣削,为来自ε-Zn(OH)2晶体的氧化锌纳米粒子的无溶剂机械化学合成提供了详细的研究。只有少数作品探索了从ε-Zn(OH)2到ZnO的干合成路线。 ε-Zn(OH)2的研磨方法在具有1:100粉末/球质量比的环境条件下进行,并且基于研磨持续时间,它产生均匀的ZnO纳米粒子10-30nm。使用XRD,TEM,DLS,UV-Vis和FTIR检查该方法对粉末组合物,纳米颗粒尺寸和应变,光学性质,光学性质,光学性质,光学性质,光学性质,光学性质和材料活性的影响。通过TGA和XPS分析研究了ε-Zn(OH)2至ZnO的转化机制。该研究对反应机理进行了证据,从结晶ε-Zn(OH)2的相转变为无定形Zn(OH)2,然后分解为ZnO和水。据我们所知,从ε-Zn(OH)2合成ZnO的这种机制方法是完全新颖的。 ε-Zn(OH)2晶体非常易于获得,并且研磨过程在环境条件下进行;因此,这项工作提供了一种简单,便宜和无溶剂的方法来生产干燥条件下的ZnO纳米颗粒。我们认为,该研究可以帮助在从ε-Zn(OH)2至ZnO的无溶剂过渡的情况下揭示一些光,并且它可以提供用于合成ZnO纳米颗粒的新的合成途径。

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