Liu Wenxiu, Yin Lili, Zhang Rui, Yang Hailian, Ma Jing, Cao Wenbin
School of Chemistry and Biological Engineering, University of Science and Technology Beijing, Beijing 100083, People's Republic of China.
Nanotechnology. 2018 Jul 13;29(28):284002. doi: 10.1088/1361-6528/aabf14. Epub 2018 Apr 18.
Three-dimensional (3D) SnO hierarchical architectures were synthesized via a one-step dissolution-precipitation route under room temperature using SnCl · 2HO and NaCO as the initial reagents. The morphology and size of the prepared SnO structures could be easily tailored by alternating the solvent from deionized water with absolute ethanol. The SEM observation showed that the prepared 3D SnO hierarchical architectures consisted of nanosheets. The size of the SnO hierarchical architectures could be effectively reduced from 4-10 μm to 1-2 μm when the solvent was changed from water to ethanol while the thickness of the assembling nanosheets was reduced from 200-500 nm to 20-30 nm at the same time. The possible formation mechanism of the 3D SnO hierarchical architectures is proposed in this paper. The photodegradation of methylene blue revealed that the SnO hierarchical structures prepared using ethanol as the solvent exhibit much better photocatalytic activity due to its smaller particle size, larger specific surface area, and appropriate band structure as well.
采用一步溶解-沉淀法,以SnCl₂·2H₂O和Na₂CO₃为起始试剂,在室温下合成了三维(3D)SnO分级结构。通过将溶剂由去离子水换成无水乙醇,可以轻松调整所制备的SnO结构的形态和尺寸。扫描电子显微镜(SEM)观察表明,所制备的3D SnO分级结构由纳米片组成。当溶剂由水换成乙醇时,SnO分级结构的尺寸可有效从4-10μm减小到1-2μm,同时组装纳米片的厚度从200-500nm减小到20-30nm。本文提出了3D SnO分级结构可能的形成机制。亚甲基蓝的光降解实验表明,以乙醇为溶剂制备的SnO分级结构由于其较小的粒径、较大的比表面积以及合适的能带结构,表现出更好的光催化活性。