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首页> 外文期刊>CrystEngComm >Crystal growth and shell layer crystal feature-dependent sensing and photoactivity performance of zinc oxide-indium oxide core-shell nanorod heterostructures
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Crystal growth and shell layer crystal feature-dependent sensing and photoactivity performance of zinc oxide-indium oxide core-shell nanorod heterostructures

机译:氧化锌-氧化铟核-壳纳米棒异质结构的晶体生长和壳层晶体特征相关的感测和光活性性能

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摘要

ZnO-In2O3 (InO) core-shell nanorod heterostructures were synthesized by sputtering InO crystallites on ZnO nanorods. InO shell layers consisting of tapered and prism-shaped InO crystallites were obtained by varying the sputtering deposition duration. The crystalline InO layer on the ZnO nanorods was composed of small tapered InO crystallites and showed a (222) orientation. However, large prism-shaped InO crystallites on ZnO showed multiple crystallographic orientations. The InO shell layer consisting of prism-shaped crystallites had a larger number of crystal defects than the InO shell layer with a tapered morphology. Comparatively, the ZnO-InO heterostructures with a prism-shaped InO shell layer showed oxidizing gas sensing and photoelectrochemical performance superior to those of the heterostructures with a tapered-morphology InO shell layer. The difference in crystal features between the tapered and the prism-shaped InO crystallites explained the observations in this study.
机译:ZnO-In2O3(InO)核壳纳米棒异质结构是通过在ZnO纳米棒上溅射InO微晶而合成的。通过改变溅射沉积时间来获得由锥形和棱柱形InO微晶组成的InO壳层。 ZnO纳米棒上的结晶InO层由小的锥形InO微晶组成,并显示(222)取向。但是,ZnO上的大棱柱状InO微晶表现出多种晶体学取向。与具有锥形形态的InO壳层相比,由棱柱形微晶组成的InO壳层具有更多的晶体缺陷。相比之下,具有棱柱形InO壳层的ZnO-InO异质结构表现出的氧化气体感测和光电化学性能优于具有锥形InO壳层的异质结构。锥形和棱柱形InO晶体之间的晶体特征差异解释了本研究的观察结果。

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