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Surface Properties of SnO2 Nanowires Deposited on Si Substrate Covered by Au Catalyst Studies by XPS TDS and SEM

机译:用XPSTDS和SEM研究金催化剂覆盖的Si基底上沉积的SnO2纳米线的表面特性

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摘要

The surface chemistry and the morphology of SnO2 nanowires of average length and diameter of several µm and around 100 nm, respectively, deposited by vapor phase deposition (VPD) method on Au-covered Si substrate, were studied before and after subsequent air exposure. For this purpose, surface-sensitive methods, including X-ray photoelectron spectroscopy (XPS), thermal desorption spectroscopy (TDS) and the scanning electron microscopy (SEM), were applied. The studies presented within this paper allowed to determine their surface non-stoichiometry combined with the presence of carbon contaminations, in a good correlation with their surface morphology. The relative concentrations of the main components [O]/[Sn]; [C]/[Sn]; [Au]/[Sn], together with the O–Sn; O–Si bonds, were analyzed. The results of TDS remained in a good agreement with the observations from XPS. Moreover, conclusions obtained for SnO2 nanowires deposited with the use of Au catalyst were compared to the previous obtained for Ag-assisted tin dioxide nanowires. The information obtained within these studies is of a great importance for the potential application of SnO2 nanowires in the field of novel chemical nanosensor devices, since the results can provide an interpretation of how aging effects influence gas sensor dynamic characteristics.
机译:在随后的空气暴露之前和之后,研究了通过气相沉积(VPD)方法分别沉积在Au覆盖的Si衬底上的平均长度和直径分别为几微米和100 nm左右的SnO2纳米线的表面化学和形态。为此,应用了包括X射线光电子能谱(XPS),热脱附能谱(TDS)和扫描电子显微镜(SEM)在内的表面敏感方法。本文进行的研究可以确定其表面非化学计量与碳污染的存在,并与其表面形态有很好的关联。主要成分的相对浓度[O] / [Sn]; [C] / [Sn]; [Au] / [Sn]以及O–Sn;分析了O-Si键。 TDS的结果与XPS的观察结果非常吻合。此外,将使用金催化剂沉积的SnO2纳米线的结论与先前用银辅助的二氧化锡纳米线获得的结论进行了比较。这些研究中获得的信息对于SnO2纳米线在新型化学纳米传感器设备领域的潜在应用非常重要,因为结果可以解释老化效应如何影响气体传感器的动态特性。

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