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Synthesis And Characterization Of Cadmium Hydroxide Nano-nest By Chemical Route

机译:化学路线氢氧化镉纳米巢的合成与表征

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A facile chemical route based on room temperature chemical bath deposition (CBD) was developed to deposit the Cd(OH)_2 nano-nest. The growth mechanism follows two-stage crystallization with initial growth of nucleation centers, followed by subsequent anisotropic growth. The nano-nest morphological evolution of Cd(OH)_2 on different substrates has been carried out. These films have been characterized by the techniques; such as X-ray diffraction (XRD), scanning electron microscope (SEM), transmission electron microscope (TEM), optical absorption, contact angle measurement and thermoelectric power (TEP) measurements. The X-ray diffraction study revealed that the as deposited film consists of cadmium hydroxide (Cd(OH)_2) phase. The nano-nest consisted of wires with nearly uniform in dimensions, with diameter around 30 nm and length of few microns. As-deposited Cd(OH)_2 film used in this study showed water contact angle of 66°. The optical bandgap was found to be 3.2 eV, with n-type electrical conductivity as confirmed from thermo-emf measurements.
机译:开发了一种基于室温化学浴沉积(CBD)的简便化学路线来沉积Cd(OH)_2纳米巢。生长机理遵循两阶段结晶,首先是成核中心的生长,然后是各向异性生长。 Cd(OH)_2在不同基质上的纳米巢形态演化。这些电影已通过技术进行了表征。例如X射线衍射(XRD),扫描电子显微镜(SEM),透射电子显微镜(TEM),光吸收,接触角测量和热电功率(TEP)测量。 X射线衍射研究表明,所沉积的膜由氢氧化镉(Cd(OH)_2)相组成。纳米巢由尺寸几乎均匀的线组成,直径约30 nm,长度几微米。本研究中使用的沉积Cd(OH)_2薄膜的水接触角为66°。由热电动势测量证实,光学带隙为3.2 eV,具有n型电导率。

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