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Growth of compact arrays of optical quality single crystalline ZnO nanorods by low temperature method

机译:低温法生长光学品质单晶ZnO纳米棒的致密阵列

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We report the synthesis and optical properties of compact and aligned ZnO nanorod arrays (dia, ∼ 50–200 nm) grown on a glass substrate with varying seed particle density. The suspension of ZnO nanoparticles (size, ∼ 15 nm) of various concentrations are used as seed layer for the growth of nanorod arrays via selfassembly of ZnO from solution. We studied the effect of various growth parameters (such as seeding density, microstructure of the seed layer) as well as the growth time on the growth and alignment of the nanorods. We find that the growth, areal density and alignment of the nanorods depend on the density of seed particles which can be controlled. It is observed that there is a critical density of the seed particles at which nanorod arrays show maximum preferred orientation along [002] direction. The minimum and maximum radius of the aligned nanorods synthesized by this method lie in the range 50–220 nm which depend on the seeding density and time of growth. These nanorods have a bandgap of 3.3 eV as in the case of bulk crystals and show emission in the UV region of the spectrum (∼ 400 nm) due to excitonic recombination and defect related emission in the visible region.
机译:我们报告了在具有不同种子粒子密度的玻璃基板上生长的紧凑且对齐的ZnO纳米棒阵列(直径,约50-200 nm)的合成和光学性质。各种浓度的ZnO纳米颗粒(尺寸约为15 nm)的悬浮液可作为种子层,通过溶液中ZnO的自组装来生长纳米棒阵列。我们研究了各种生长参数(例如种子密度,种子层的微观结构)以及生长时间对纳米棒的生长和排列的影响。我们发现纳米棒的生长,面密度和排列取决于可控制的种子颗粒的密度。观察到种子颗粒具有临界密度,在该临界密度下,纳米棒阵列沿[002]方向显示出最大的优选取向。通过这种方法合成的排列好的纳米棒的最小和最大半径在50-220 nm范围内,这取决于接种密度和生长时间。这些纳米棒与大块晶体一样具有3.3 eV的带隙,并且由于激子复合和可见区中与缺陷相关的发射而在光谱的UV区(约400 nm)中显示出发射。

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