Qurashi Ahsanulhaq, Tabet N, Faiz M, Yamzaki Toshinari
Nanoscale Res Lett. 2009 Apr 25;4(8):948-954. doi: 10.1007/s11671-009-9317-7.
Ultra-fast and large-quantity (grams) synthesis of one-dimensional ZnO nanowires has been carried out by a novel microwave-assisted method. High purity Zinc (Zn) metal was used as source material and placed on microwave absorber. The evaporation/oxidation process occurs under exposure to microwave in less than 100 s. Field effect scanning electron microscopy analysis reveals the formation of high aspect-ratio and high density ZnO nanowires with diameter ranging from 70 to 80 nm. Comprehensive structural analysis showed that these ZnO nanowires are single crystal in nature with excellent crystal quality. The gas sensor made of these ZnO nanowires exhibited excellent sensitivity, fast response, and good reproducibility. Furthermore, the method can be extended for the synthesis of other oxide nanowires that will be the building block of future nanoscale devices.
通过一种新型微波辅助方法实现了一维氧化锌纳米线的超快速和大量(克级)合成。使用高纯度锌(Zn)金属作为源材料并放置在微波吸收器上。蒸发/氧化过程在微波照射下不到100秒内发生。场效应扫描电子显微镜分析表明,形成了直径范围为70至80纳米的高纵横比和高密度氧化锌纳米线。综合结构分析表明,这些氧化锌纳米线本质上是单晶,具有优异的晶体质量。由这些氧化锌纳米线制成的气体传感器表现出优异的灵敏度、快速响应和良好的重现性。此外,该方法可扩展用于合成其他氧化物纳米线,这些纳米线将成为未来纳米级器件的构建块。