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首页> 外文期刊>AIP Advances >Structural and photoluminescence properties of tin oxide and tin oxide: C core–shell and alloy nanoparticles synthesised using gas phase technique
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Structural and photoluminescence properties of tin oxide and tin oxide: C core–shell and alloy nanoparticles synthesised using gas phase technique

机译:氧化锡和氧化锡的结构和光致发光特性:使用气相技术合成的C核壳和合金纳米粒子

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摘要

In the present study, we report a controlled growth of tin oxide and tin oxide: carbon nanoparticles by an integrated method comprising of the gas phase agglomeration, electrical mobility based size selection, and in–flight sintering steps. The effect of in-flight sintering temperature and variation in growth environment (N2, H2 and O2) during nanoparticle formation, morphology and composition has been investigated by carrying out High Resolution Transmission Electron microscopy and X-Ray diffraction studies. The results highlight the novelty of the present technique to grow alloy and core-shell nanoparticles in which the stoichiometery (x) of SnOx and the mode of incorporation of carbon into the tin oxide lattice (alloy or core-shell structure), along with well-defined size can be controlled independently. Detailed Photoluminescence (PL) studies of well sintered monocrystalline SnO, SnOx and SnO2 nanoparticles along with SnOx:C and SnO2:C alloy and C@SnO core-shell nanoparticle has been carried out. The shift in the position and nature of PL peaks due to band edge, Sn interstitials and oxygen vacancy defect level energy states has been understood as a function of stoichiometery and nanoparticle structure (alloy and core-shell). These results suggest the possibility of tailoring the position of these levels by controlling the size, composition and alloying which is potentially important for gas sensing, photoconductivity and photo-electrochemical applications.
机译:在本研究中,我们报告了通过包括气相团聚,基于电迁移率的尺寸选择和飞行中烧结步骤在内的集成方法,可控制地生长氧化锡和氧化锡:碳纳米颗粒。飞行中烧结温度和生长环境变化(N 2 ,H 2 和O 2 )在纳米颗粒形成,形貌和形成过程中的影响已经通过进行高分辨率透射电子显微镜和X射线衍射研究来研究其组成。结果突出了本技术用于生长合金和核-壳纳米粒子的新颖性,其中SnO x 的化学计量比(x)和碳掺入氧化锡晶格(合金或核)的方式-壳结构)以及定义明确的尺寸可以独立控制。烧结良好的单晶SnO,SnO x 和SnO 2 纳米颗粒以及SnO x :C和SnO 的详细光致发光(PL)研究2 :C合金和C @ SnO核壳纳米粒子的制备。由于能带边缘,Sn间隙和氧空位缺陷能级所引起的PL峰的位置和性质的变化已被理解为化学计量和纳米粒子结构(合金和核-壳)的函数。这些结果表明通过控制尺寸,组成和合金化来调整这些能级的位置的可能性,这对于气体感测,光电导和光电化学应用而言可能至关重要。

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