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A versatile solution route for oxide/sulfide core-shell nanostructures and nonlayered sulfide nanotubes

机译:氧化物/硫化物核壳纳米结构和非分层硫化物纳米管的通用解决方案

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摘要

Large-scale, uniform and regular oxide/sulfide core-shell nanostructures and nonlayered sulfide nanotubes, such as ZnO/ZnS, SnO_2/SnS_2, MnO_2/MnS_2 core-shell nanostructures, as well as ZnS and SnS_2 nanotubes, have been prepared by a versatile approach based on a thioglycolic acid assisted hydrothermal process and subsequent NaOH treatment. The above-mentioned nanostructures have been characterized by x-ray powder diffraction (XRD), transmission electron microscopy (TEM) and field emission scanning electron microscopy (FESEM). Moreover, the role of thioglycolic acid for the formation of oxide/sulfide core-shell and nonlayered sulfide nanotubes has been identified. Finally, the formation mechanism for the derived nanostructures has been phenomenologically presented.
机译:ZnO / ZnS,SnO_2 / SnS_2,MnO_2 / MnS_2核壳纳米结构,ZnS和SnS_2纳米管等大规模,均匀,规则的氧化物/硫化物核壳纳米结构和非层状硫化物纳米管。基于巯基乙酸辅助水热工艺和随后的NaOH处理的通用方法。上述纳米结构已经通过X射线粉末衍射(XRD),透射电子显微镜(TEM)和场发射扫描电子显微镜(FESEM)来表征。此外,已经确定了巯基乙酸在形成氧化物/硫化物核壳和非层状硫化物纳米管中的作用。最后,从现象学上介绍了衍生纳米结构的形成机理。

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