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Influence of SnO_2 coating and thermal annealing on the structure and luminescence properties of CuO nanorods

机译:SnO_2涂层和热退火对CuO纳米棒结构和发光性能的影响

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摘要

CuO-core/ SnO_2-shell one-dimensional nanostructures have been fabricated by thermal oxidation of a copper foil and then atomic layer deposition of SnO_2. The structure and optical properties of the nanostructures have been investigated by using scanning electron microscopy, transmission electron microscopy, X-ray diffraction, photoluminescence (PL) spectroscopy, and energy-dispersive X-ray analysis techniques. The nanostructures are found to have the form of nanorods, with the diameter of the CuO cores being in the range from a few tens to a few hundreds of nanometers, the thickness of the SnO_2 shells being ~15 nm, and with a length of a few tens of micrometers. The CuO cores and the SnO_2 shells of the as-synthesized nanorods have crystalline monoclinic CuO and amorphous SnO_2 structures, respectively, but the SnO_2 shells are found to crystallize to tetragonal SnO_2 on thermal annealing. The PL emission intensity of the CuO nanorods has been slightly increased by SnO _2 coating. The PL emission of the SnO_2-coated CuO nanorods is somewhat increased and the emission peak position is red-shifted from 550 to 580 nm by annealing in a reducing atmosphere. On the other hand, the PL emission is significantly increased and the emission peak position is shifted from 550 nm further to around 595 nm by annealing in an oxidative atmosphere. In addition, the origins of the PL enhancements in the nanorods by coating and annealing are discussed.
机译:铜箔的热氧化和SnO_2的原子层沉积制备了CuO核/SnO_2壳一维纳米结构。采用扫描电子显微镜、透射电子显微镜、X射线衍射、光致发光(PL)光谱和能量色散X射线分析技术研究了纳米结构的结构和光学性质。纳米结构被发现具有纳米棒的形式,CuO核心的直径在几十到几百纳米的范围内,SnO_2壳的厚度为~15纳米,长度为几十微米。合成纳米棒的CuO核心和SnO_2壳分别具有结晶单斜CuO和非晶SnO_2结构,但发现SnO_2壳在热退火时结晶为四方SnO_2。SnO _2涂层略微提高了CuO纳米棒的PL发射强度。SnO_2包覆CuO纳米棒的PL发射略有增加,通过还原气氛退火,发射峰位置从550 nm红移至580 nm。另一方面,通过在氧化气氛中退火,PL发射显著增加,发射峰位置从550 nm进一步移动到595 nm左右。此外,还讨论了通过涂层和退火增强纳米棒的PL的起源。

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