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Synthesis and Characterizing of High Aspect Ratio Silver Nanowires by Polyol Process

机译:多元醇工艺的高纵横比银纳米线的合成与表征

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Silver nanowires with controllable and high length-diameter ratios were prepared by using the reducibility of ethylene glycol and selective adsorption of PVP under a high temperature. AgNO_3, ethylene glycol, PVP and CuCl_2 was used as the silver source, the reductant, the capping agent and the ion additives, respectively. The effects of centrifugal rate, silver ions' concentration, AgNO_3 adding rate on the morphology of silver nanowires were investigated by SEM, XRD, TEM and other technologies. The results show that the optimal centrifugal rate is 2000 n/s, the better silver ions' concentration is 6.55 mg/mL, and the best rate of adding AgNO_3 is 3 ml/min. The silver nanowires with an average diameter of 74.9 nm, the average length of 45.5祄 and its length-diameter ratio of 607.5 are obtained. The silver nanowires with good morphology and high length-diameter ratio are adjustable, which is suitable for the preparation of OLED transparent film electrode materials, and other conductive materials.
机译:通过使用乙二醇的可还原性和在高温下的PVP的选择性吸附来制备具有可控和高长直径比率的银纳米线。 AgNO_3,乙二醇,PVP和CuCl_2分别用作银源,还原剂,封端剂和离子添加剂。通过SEM,XRD,TEM等技术研究了离心率,银离子浓度,银离子浓度,AgNO_3对银纳米线形态的增加。结果表明,最佳离心率为2000N / s,更好的银离子浓度为6.55mg / ml,添加AgnO_3的最佳速率为3ml / min。平均直径为74.9nm的银纳米线,得到平均长度为45.5,其长度直径比为607.5。具有良好形貌和高长直径比的银纳米线是可调节的,适用于制备OLED透明膜电极材料和其他导电材料。

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