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A new approach to synthesize uniform metal oxide hollow nanospheres via controlled precipitation

机译:通过控制沉淀合成均匀金属氧化物空心纳米球的新方法

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摘要

Uniform NiO, alpha-Fe_2O_3, ZnO, CuO and Ga_2O_3 hollow nanospheres consisting of a shell of closely packed nanoparticles with a shell wall thickness of a few tens of nanometers have been successfully synthesized on a large scale by controlled precipitation of metal cations with urea in the presence of carbonaceous saccharide nanospheres as hard templates. In addition, it is interesting to find that the single-phase transition metal oxides of NiO and alpha-Fe_2O_3 can form ball-in-ball hollow nanoarchitectures by this simple approach. Furthermore, it is demonstrated that direct size control of the oxide hollow nanospheres can be achieved by using carbon templates of different diameters. This method could be extended to the synthesis of many other metal oxide hollow nanospheres. The hollow nanostructured metal oxides might be found to have potential applications in many fields such as catalyst supports, catalysis, drug delivery, chemical/biological separation, sensing, etc.
机译:已成功地通过尿素控制下的金属阳离子沉淀,成功地大规模合成了均匀密合的NiO,α-Fe_2O_3,ZnO,CuO和Ga_2O_3中空纳米球,该纳米球由紧密堆积的纳米颗粒的壳构成,壳壁厚度为几十纳米。碳糖纳米球作为硬模板的存在。此外,有趣的是,通过这种简单的方法,NiO和α-Fe_2O_3的单相过渡金属氧化物可以形成球形的空心纳米结构。此外,证明了通过使用不同直径的碳模板可以直接控制氧化物空心纳米球的尺寸。该方法可以扩展到许多其他金属氧化物空心纳米球的合成。中空纳米结构的金属氧化物可能被发现在许多领域具有潜在的应用,例如催化剂载体,催化,药物输送,化学/生物分离,传感等。

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