Rinaldi Antonio, Pea Marialilia, Notargiacomo Andrea, Ferrone Eloisa, Garroni Sebastiano, Pilloni Luciano, Araneo Rodolfo
Sustainability Department, ENEA, C.R. Casaccia, Santa Maria di Galeria, 00123 Rome, Italy.
Institute for Photonics and Nanotechnologies-CNR, via Cineto Romano 42, 00156 Rome, Italy.
Nanomaterials (Basel). 2021 Feb 13;11(2):475. doi: 10.3390/nano11020475.
In this work, we propose the synthesis of ZnO nanostructures through the thermal oxidation of ball-milled powders with the introduction of Mg and Sn doping species at the preliminary step of milling. We investigate the advantages and challenges of this two steps process for the production and fabrication of highly crystalline ZnO nanowires. This simple method allows us to fabricate ZnO nanowires with a higher quality core crystal at a much lower temperature and for a shorter processing time than the state-of-the-art, and decorated with by ZnO nanoparticles as determined via TEM analysis. The main findings will show that the crystalline core of the nanowires is of hexagonal ZnO while the nanoparticles on the surface are ZnO cubic type. Generally, the method proves to be suitable for applications that require a high surface-to-volume ratio, for example, catalysis phenomena, in which the presence of zinc oxides species can play an important role.
在这项工作中,我们提出通过对球磨粉末进行热氧化来合成ZnO纳米结构,并在球磨的初始步骤中引入Mg和Sn掺杂物种。我们研究了这个两步法在生产和制造高度结晶的ZnO纳米线方面的优势和挑战。这种简单的方法使我们能够在比现有技术低得多的温度和更短的加工时间内制造出具有更高质量核心晶体的ZnO纳米线,并通过TEM分析确定其表面装饰有ZnO纳米颗粒。主要研究结果将表明,纳米线的结晶核心是六方ZnO,而表面的纳米颗粒是立方ZnO类型。一般来说,该方法被证明适用于需要高表面积与体积比的应用,例如催化现象,其中氧化锌物种的存在可以发挥重要作用。