首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Morphology controlled synthesis of wurtzite ZnS nanostructures through simple hydrothermal method and observation of white light emission from ZnO obtained by annealing the synthesized ZnS nanostructures
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Morphology controlled synthesis of wurtzite ZnS nanostructures through simple hydrothermal method and observation of white light emission from ZnO obtained by annealing the synthesized ZnS nanostructures

机译:通过简单的水热法进行形态学控制的纤锌矿型ZnS纳米结构的合成,并观察通过对合成的ZnS纳米结构进行退火而获得的ZnO的白光发射

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A controllable synthesis of phase pure wurtzite (WZ) ZnS nanostructures has been reported in this work at a low temperature of ~220 °C using ethylenediamine as the soft template and by varying the molar concentration of zinc to sulphur precursors as well as by using different precursors. A significant reduction in the formation temperature required for the synthesis of phase pure WZ ZnS has been observed. A strong correlation has been observed between the morphology of the synthesized ZnS nanostructures and the precursors used during synthesis. It has been found from Scanning Electron Microscope (SEM) and Transmission Electron Microscope (TEM) image analyses that the morphology of the ZnS nanocrystals changes from a block-like to a belt-like structure having an average length of ~450 nm when the molar ratio of zinc to sulphur source is increased from 1:1 to 1: 3. An oriented attachment (OA) growth mechanism has been used to explain the observed shape evolution of the synthesized nanostructures. The synthesized nanostructures have been characterized by the X-ray diffraction technique as well as by UV-Vis absorption and photoluminescence (PL) emission spectroscopy. The as-synthesized nanobelts exhibit defect related visible PL emission. On isochronal annealing of the nanobelts in air in the temperature range of 100-600 °C, it has been found that white light emission with a Commission Internationale de I'Eclairage 1931 (CIE) chromaticity coordinate of (0.30, 0.34), close to that of white light (0.33, 0.33), can be obtained from the ZnO nanostructures obtained at an annealing temperature of 600 °C. UV light driven degradation of methylene blue (MB) dye aqueous solution has also been demonstrated using as-synthesized nanobelts and ~98% dye degradation has been observed within only 40 min of light irradiation. The synthesized nanobelts with visible light emission and having dye degradation activity can be used effectively in future optoelectronic devices and in water purification for cleaning of dyes.
机译:在这项工作中,已经报道了在约220°C的低温下使用乙二胺作为软模板并通过改变锌与硫前体的摩尔浓度以及通过使用不同的锌可控合成相纯纤锌矿(WZ)ZnS纳米结构的方法。前体。已经观察到,合成相纯WZ ZnS所需的形成温度大大降低。已观察到合成的ZnS纳米结构的形态与合成过程中使用的前体之间有很强的相关性。从扫描电子显微镜(SEM)和透射电子显微镜(TEM)图像分析中发现,当摩尔比为ZnS时,ZnS纳米晶体的形态从块状变为平均长度约为450 nm的带状结构。锌与硫源的比率从1:1增加到1:3。定向附着(OA)生长机制已用于解释所观察到的合成纳米结构的形状演​​变。合成的纳米结构已通过X射线衍射技术以及UV-Vis吸收和光致发光(PL)发射光谱进行了表征。合成后的纳米带表现出与缺陷相关的可见PL发射。在100-600°C的温度范围内对空气中的纳米带进行等时退火时,发现白光的发射与国际照明委员会1931(CIE)色度坐标为(0.30,0.34),接近可以从在600°C的退火温度下获得的ZnO纳米结构获得白光(0.33,0.33)的色散。还使用合成的纳米带证明了亚甲基蓝(MB)染料水溶液的紫外光驱动降解,仅在光照射40分钟内即可观察到约98%的染料降解。具有可见光发射并且具有染料降解活性的合成的纳米带可以有效地用于未来的光电器件和水净化中以清洁染料。

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