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Preparation and characterization of ZnO nanorods from NaOH solutions with assisted electrical field

机译:NaOH辅助电场制备ZnO纳米棒及其表征。

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ZnO naorods on ZnO-coated seed substrates were fabricated by solution chemical method from Zn(NO3)(2)/NaOH under assisted electrical field. The working mechanism of electrical field was analyzed and the factors affecting the rod growth such as potential, precursor concentration and growth temperature were elucidated. The structural and optical properties are characterized by SEM, TEM, XRD, HRTEM and UV-vis. The results indicated that the nanorods have wurtzite structure without electrical field and are primarily of zincite structure under electrical field; when the electrical field is 1.1-1.3 V, not only the elevation of ion diffusion and adsorption lower the crystallite/solution interfacial energy and then the crystal nucleation barrier by increasing charge intensity, but also the production of H+ through oxidation of OH- increases properly the degree of solution supersaturation near the substrate, and thus lowers the activation energy. Both the two processes do favor to rod growth. With increasing precursor concentration in this system, the average diameter and length of ZnO nanorods increase, leading to decreasing of optical transmittance. The maximum rod growth rate at given concentration of Zn2+ occurs at a specific temperature. (c) 2006 Elsevier B.V. All rights reserved.
机译:在辅助电场下,通过溶液化学方法由Zn(NO3)(2)/ NaOH溶液化学方法在ZnO包覆的种子基质上制备ZnO纳米晶。分析了电场的作用机理,阐明了影响棒生长的因素,如电位,前驱体浓度和生长温度。通过SEM,TEM,XRD,HRTEM和UV-vis表征结构和光学性质。结果表明,纳米棒具有纤锌矿结构,无电场,在电场作用下主要为锌铁矿结构。当电场为1.1-1.3 V时,不仅离子扩散和吸附的升高降低了微晶/溶液界面能,而且通过增加电荷强度降低了晶体成核势垒,而且通过OH-氧化产生的H +也适当增加了溶液在基材附近过饱和的程度,因此降低了活化能。这两个过程都确实有利于杆的生长。随着该系统中前驱物浓度的增加,ZnO纳米棒的平均直径和长度增加,从而导致光透射率降低。在给定的Zn2 +浓度下,最大棒生长速率出现在特定温度下。 (c)2006 Elsevier B.V.保留所有权利。

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