喷雾热解法制备多相氧化镉锡薄膜的结构和表面形貌

IF 0.5 Q4 PHYSICS, MULTIDISCIPLINARY
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引用次数: 0

摘要

摘要:采用喷雾热解法制备了不同Sn摩尔分数(Sn/(Sn+Cd))的氧化锡镉(Cd-Sn-O)(CSO)薄膜。X射线衍射测量显示Cd2SnO4相的多晶结构以及0.1Sn比的CdSnO3和SnO2的次相。增加Sn浓度导致Cd2SnO4的多晶结构相减少,并且增加了在0.3Sn摩尔分数下作为主导相的CdSnO3。SnO2的多晶结构相在0.5Sn摩尔分数下表现为占主导地位。采用场发射扫描电子显微镜(FE-SEM)研究了在不同Sn摩尔分数下制备的CSO。CSO薄膜在0.1摩尔分数下的FE-SEM结果显示纳米棒直径为266nm,并且观察到的纳米棒的尺寸在0.2Sn摩尔分数下显示最大。用0.3Sn摩尔分数制备的样品表现为两种颗粒结构;在膜表面上由径向分支的层压结构覆盖的彼此连接的直径为250nm的小球状结构。这些形状宽约470nm,长约3.5μm。在样品类型中,在0.4Sn摩尔分数下,层状结构出现卷曲并覆盖膜表面的较大面积。在0.5的比例下,层状结构覆盖了膜的整个表面。关键词:镉锡氧化物,金属氧化物,(Cd,Sn)氧化物复合材料,喷雾热解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Structural and Surface Morphology of Multi-phase Cadmium Stannic Oxide Thin Films Prepared by Spray Pyrolysis Technique
Abstract: In this study, cadmium stannic oxide (Cd-Sn-O) (CSO) thin films of different Sn mole fractions (Sn/(Sn+Cd)) were prepared by spray pyrolysis. X-ray diffraction measurements showed polycrystalline structures of Cd2SnO4 phase and minor phases of CdSnO3 and SnO2 at 0.1 Sn ratio. Increasing the Sn concentration caused reducing the polycrystalline structure phase of Cd2SnO4 and increasing CdSnO3 being the dominant phase at 0.3 Sn mole fraction. The polycrystalline structure phase of SnO2 appeared as dominant at 0.5 Sn mole fraction. Field Emission Scanning Electron Microscopy (FE-SEM) was employed to investigate CSO that was prepared at different Sn mole fractions. The FE-SEM results of CSO thin films at 0.1 mole fraction showed nanorods which are 266 nm in diameter and the dimensions of the observed nanorods showed maximum at 0.2 Sn mole fraction. The sample prepared with 0.3 Sn mole fraction appeared as two particle structures; small spherical structures with a diameter of 250 nm attached to each other covered by radially branched laminate structures on the film surface. These shapes were about 470 nm wide and 3.5 μm long. In the sample type, at 0.4 Sn mole fraction, the lamellar structure emerged to curl and covered a larger area of the film surface. At the ratio of 0.5, the lamellar structure covered the entire surface of the film. Keywords: Cadmium stannic oxide, Metal oxide, (Cd, Sn) oxide composite, Spray pyrolysis.
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来源期刊
Jordan Journal of Physics
Jordan Journal of Physics PHYSICS, MULTIDISCIPLINARY-
CiteScore
0.90
自引率
14.30%
发文量
38
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