Zhou Hai, Kang Min, Qin Biao, Zhao Ning, Wu Dong, Lv Baoliang, Wang Qingjie
Department of Chemistry and Chemical Engineering, Zunyi Normal College Zunyi 563006 China
Academician Workstation of Zunyi Normal College Zunyi 563006 China.
RSC Adv. 2018 Apr 17;8(26):14157-14163. doi: 10.1039/c8ra00684a.
In this work, we demonstrated a facile template-free method for the preparation of hollow CuO microspheres a conventional hydrothermal reaction. The hollow architecture formed directly during the hydrothermal treatment of copper nitrate and glucose, without the use of template, precipitant and calcination process. The effects of reaction time, reaction temperature and glucose concentration were investigated in detail. On the basis of experimental results, the formation of hollow CuO microspheres probably proceeded self-assemble process and the subsequent Ostwald's ripening. This synthetic strategy strongly depended on the characteristics of copper nitrate, which made it could not extend to other copper salts and/or nitrates. Even though, glucose still showed efficient morphology controlling ability with respect to nanosized transitional metal oxides, which could be used for the controllable synthesis of nanomaterials.
在本工作中,我们展示了一种通过常规水热反应制备空心CuO微球的简便无模板方法。空心结构在硝酸铜和葡萄糖的水热处理过程中直接形成,无需使用模板、沉淀剂和煅烧过程。详细研究了反应时间、反应温度和葡萄糖浓度的影响。基于实验结果,空心CuO微球的形成可能经历了自组装过程以及随后的奥斯特瓦尔德熟化。这种合成策略强烈依赖于硝酸铜的特性,这使得它不能扩展到其他铜盐和/或硝酸盐。即便如此,葡萄糖对于纳米级过渡金属氧化物仍表现出有效的形貌控制能力,可用于纳米材料的可控合成。