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首页> 外文期刊>Nanotechnology >PbS nanosculptured thin film for phase retarder, anti-reflective, excellent absorber, polarizer and sensor applications
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PbS nanosculptured thin film for phase retarder, anti-reflective, excellent absorber, polarizer and sensor applications

机译:用于相位延迟器,抗反射,出色的吸收体,偏振器和传感器应用的PbS纳米雕刻薄膜

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Lead-sulphide (PbS) nanosculptured thin film (nSTF) is prepared using a glancing angle deposition (GLAD) technique and the physical vapour deposition (PVD) process. The morphology of the GLAD films clearly shows that an anisotropic structure is obtained and is composed of micro-sheets with sharp top edges (a few tens of nanometres tip width). Due to this anisotropy, optical birefringence is induced in the nSTF as well as linear dichroism. The structural and optical properties of the PbS nSTF have been characterized by scanning electron microscopy, atomic force microscopy, Raman spectroscopy and transmission measurements. The Raman spectra of PbS nSTF exhibit sharp peaks representative of vibrations in nanocrystalline PbS. Due to the absorption of PbS the nSTF is found to act as a linear polarizer with good extinction and contrast in the near infra-red range. Due to its porosity this nSTF also has the ability to sense fluids, which we demonstrate using ethanol-water solution at different concentrations. The combination of these effects in PbS nSTF is believed to constitute a prime candidate for many desirable device applications in different aspects with the low cost of production in large areas.
机译:使用掠射角沉积(GLAD)技术和物理气相沉积(PVD)工艺制备硫化铅(PbS)纳米雕刻薄膜(nSTF)。 GLAD膜的形态清楚地表明,获得了各向异性的结构,并且由具有尖锐的顶部边缘(尖端宽度为几十纳米)的微片组成。由于这种各向异性,nSTF和线性二向色性都引起了光学双折射。 PbS nSTF的结构和光学性质已通过扫描电子显微镜,原子力显微镜,拉曼光谱和透射率测量进行了表征。 PbS nSTF的拉曼光谱显示出尖锐的峰,代表纳米晶PbS中的振动。由于吸收了PbS,nSTF被用作线性偏振器,在近红外范围内具有良好的消光和对比度。由于其多孔性,该nSTF还具有感测流体的能力,我们使用不同浓度的乙醇水溶液证明了这一点。人们认为,PbS nSTF中这些效应的结合构成了许多方面的许多理想器件应用的主要候选者,而且大面积生产成本低。

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