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From Nanorods to Nanowires of CdS Synthesized by a Solvothermal Method: Influence of the Morphology on the Photoactivity for Hydrogen Evolution from Water

机译:溶剂热法从CdS的纳米棒到纳米线:形态对光活性从水中放出氢的影响

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摘要

The effect of temperature and water/thiourea ratio on the growth, crystallinity and morphological characteristics of CdS nanostructures synthetized by a solvothermal method using ethylenediamine as solvent were studied. The temperature and water/thiourea ratio used in the synthesis determine the surface area, shape, length and degree of crystallinity of the CdS nanostructures obtained. Nanowires of high crystallinity and length were obtained when the solvothermal synthesis was performed at 190 °C, while nanorods with lower length and crystallinity were obtained as the solvothermal temperature decreased to 120 °C. The change in the water/thiourea ratio affects the crystallinity and length of the CdS nanostructures to a lesser extent than temperature. Nevertheless an increase in the water/thiourea ratio used during the solvothermal synthesis resulted in CdS nanorods with higher crystallinity, lower aspect ratio and lower specific surface area. Textural, structural and surface properties of the prepared CdS nanostructures were determined and related to the activity results in the production of hydrogen from aqueous solutions containing SO + S under visible light.
机译:研究了温度和水/硫脲比对以乙二胺为溶剂溶剂热法合成的CdS纳米结构的生长,结晶度和形貌特征的影响。合成中使用的温度和水/硫脲比率决定了所得CdS纳米结构的表面积,形状,长度和结晶度。当在190℃进行溶剂热合成时,获得了具有高结晶度和长度的纳米线,而当溶剂热温度降至120℃时,获得了具有较低长度和结晶度的纳米线。水/硫脲比例的变化对CdS纳米结构的结晶度和长度的影响小于温度。然而,在溶剂热合成过程中使用的水/硫脲比率的增加导致CdS纳米棒具有更高的结晶度,更低的长径比和更低的比表面积。确定了制备的CdS纳米结构的结构,结构和表面性质,并将其与活性相关,从而在可见光下从含SO + S的水溶液中产生氢。

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