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Fast Synthesis of ZnO Nanostructures by Laser-Induced Decomposition of Zinc Acetylacetonate

机译:激光诱导乙酰丙酮锌分解快速合成ZnO纳米结构

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摘要

A CO2 laser(lambda = 10.6 mu m)was used to heat a solution of water and alcohol saturated by Zn(AcAc)2 on a fused quartz substrate in open air.After only a few seconds of irradiation,various zinc oxide(ZnO)nanostructures including nanorods and nanowires are formed near the center of the irradiated zone,surrounded by a porous thin film of ZnO nanoparticles.The type of structures produced and their localization on the substrate can be varied by selecting adequate irradiation time and laser power ranges.The deposits have been analyzed using SEM,TEM,EDS,XRD,and Raman spectroscopy,revealing that the nanorods(aspect ratio ~6)and nanowires(aspect ratio ~94)are single-crystalline structures which grow along the c axis of wurtzite ZnO.The nanoparticles are also single-crystalline and have an average diameter of 16 nm.A qualitative model for nanostructure growth is proposed,based on previous studies of aqueous solution and hydrothermal processing.
机译:用二氧化碳激光(λ= 10.6μm)在空气中加热熔融石英衬底上的Zn(AcAc)2饱和的水和酒精溶液。仅照射几秒钟后,各种氧化锌(ZnO)纳米棒和纳米线等纳米结构形成在辐照区的中心附近,周围环绕着一层ZnO纳米颗粒的多孔薄膜。通过选择适当的辐照时间和激光功率范围,可以改变产生的结构类型及其在基板上的位置。利用SEM,TEM,EDS,XRD和拉曼光谱对沉积物进行了分析,结果表明纳米棒(长径比〜6)和纳米线(长径比〜94)是沿纤锌矿ZnO的c轴生长的单晶结构。纳米粒子也是单晶的,平均直径为16 nm。基于先前对水溶液和水热处理的研究,提出了纳米结构生长的定性模型。

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