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Controlled synthesis of tellurium nanowires and nanotubes via a facile, efficient, and relatively green solution phase method

机译:通过一种简便,高效且相对绿色的溶液相方法可控制地合成碲纳米线和纳米管

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摘要

Single-crystal trigonal tellurium nanowires and nanotubes were synthesized using a facile, efficient, and relatively green solution phase method with ethylene glycol as solvent and an alternative reducing agent in the presence of NaOH. Large-scale production of slender nanowires and hollow nanotubes with average diameters of 72 and 240 nm, respectively, was achieved by increasing the temperature from 170 °C to 200 °C. Tellurium morphology from nanowires to nanotubes was also controlled by adjusting the NaOH dosage. Scanning electron micrographs show that low temperature or NaOH insufficiency promotes the formation of slender nanowires but counteracts the synthesis of tellurium nanotubes, Detailed reaction equations based on the NaOH dosage were obtained. Preferential growth orientation of [001] was observed in the nanowire and nanotube through high-resolution transmission electron microscopy Further formation mechanisms dependent on time were systematically studied.
机译:使用简便,高效且相对绿色的溶液相方法,以乙二醇为溶剂,在NaOH存在下,使用还原剂,合成了单晶三角碲纳米线和纳米管。通过将温度从170°C升高到200°C,可以分别大规模生产平均直径分别为72和240 nm的细长纳米线和中空纳米管。从纳米线到纳米管的碲形态也可以通过调节NaOH的用量来控制。扫描电子显微镜照片显示,低温或NaOH不足会促进细长的纳米线的形成,但会抵消碲纳米管的合成,得出了基于NaOH用量的详细反应方程式。通过高分辨率透射电子显微镜观察到纳米线和纳米管中[001]的优先生长方向。系统地研究了取决于时间的进一步形成机理。

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