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首页> 外文期刊>Applied Surface Science >Multi-band emission in a wide wavelength range from tin oxide/Au nanocomposites grown on porous anodic alumina substrate (AAO)
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Multi-band emission in a wide wavelength range from tin oxide/Au nanocomposites grown on porous anodic alumina substrate (AAO)

机译:在多孔阳极氧化铝基板(AAO)上生长的氧化锡/ Au纳米复合材料在宽波长范围内进行多波段发射

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摘要

The photoluminescence (PL) properties of tin oxide nanostructures are investigated. Three samples of different morphology, induced by deposition process and various geometrical features of nanoporous anodic aluminum oxide (AAO) substrate, are analyzed. X-ray photoelectronic spectroscopy (XPS) analysis reveals the presence of two forms of tin oxide on the surface of all studied samples: SnO and SnC>2. The former form is typical for reduced surface with bridging oxygen atoms and every other row of in-plane oxygen atoms removed. The oxygen defects give rise to a strong emission in visible region. Two intense PL peaks are observed centered at about 540 (band I) and 620 (band II) nm. The origin of these bands was ascribed to the recombination of electrons from the conduction band (band I) and shallow traps levels (band II) to the surface oxygen vacancy levels. Upon deposition of Au nanoparticles on the top of tin oxide nanostructures the emission at 540 and 620 nm disappears and a new band (band III) occurs in the range >760 nm. The PL mechanism operating in the studied systems is discussed. The tin oxide/Au nanocomposites can be used as efficient multi-band light emitters in a wide (from visible to near infrared) wavelength range.
机译:研究了氧化锡纳米结构的光致发光(PL)特性。分析了沉积过程和纳米多孔阳极氧化铝(AAO)基板的各种几何特征引起的三种不同形态的样品。 X射线光电子能谱(XPS)分析表明,所有研究样品的表面均存在两种形式的氧化锡:SnO和SnC> 2。前一种形式通常用于还原的表面,带有桥接的氧原子,并且每隔一行的平面内氧原子都被除去。氧缺陷在可见光区域引起强烈的发射。观察到两个强烈的PL峰,中心在大约540(波段I)和620(波段II)nm处。这些能带的起源归因于电子从导带(能带I)和浅陷阱能级(能带II)到表面氧空位的复合。当金纳米颗粒沉积在氧化锡纳米结构的顶部时,在540和620 nm处的发射消失,并且在大于760 nm的范围内出现新的谱带(谱带III)。讨论了在研究系统中运行的PL机制。氧化锡/ Au纳米复合材料可用作宽(从可见光到近红外)波长范围内的高效多波段发光体。

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