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首页> 外文期刊>Journal of Materials Science >Growth mechanism of one-dimensional zinc sulfide nanostructures through electrophoretic deposition
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Growth mechanism of one-dimensional zinc sulfide nanostructures through electrophoretic deposition

机译:电泳沉积一维硫化锌纳米结构的生长机理

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In this paper, we show experimental evidence about the growth mechanism of one-dimensional ZnS nanostructures through electrophoretic deposition. ZnS nanoparticles with 20 nm of mean diameter were prepared by microwave-assisted synthesis using sodium citrate as the stabilizer. The resulting aqueous dispersion was deposited without any further preparation by means of electrophoretic methods using aluminum plates as electrodes under 600 mV in order to avoid bubble formation. FE-SEM images of different deposition times confirm the previously proposed mechanism of lyosphere distortion and thinning and the subsequent dipole-dipole interactions' phenomena where the incoming particles are oriented by the particles previously deposited. In this mechanism, the first particle/lyosphere deposited acts as a dipole and attract the incoming particles to it, creating a one-dimensional nanostructure after some time of deposition. These results can help understand the different mechanisms of the electrophoretic deposition and are useful for future nanostructure designs of semiconductor materials.
机译:在本文中,我们显示了有关通过电泳沉积生长一维ZnS纳米结构的实验证据。以柠檬酸钠为稳定剂,通过微波辅助合成制备了平均粒径为20 nm的ZnS纳米粒子。为了避免气泡的形成,使用铝板作为电极,通过电泳方法将所得的水分散体在没有任何进一步制备的情况下沉积在600mV下。不同沉积时间的FE-SEM图像证实了先前提出的液球变形和变薄的机制以及随后的偶极子-偶极子相互作用的现象,其中入射粒子被先前沉积的粒子定向。在这种机制下,沉积的第一个粒子/液球起到偶极子的作用,并将进入的粒子吸引到其上,在沉积一段时间后形成一维纳米结构。这些结果可以帮助理解电泳沉积的不同机理,并且对半导体材料的未来纳米结构设计很有用。

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