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Nickel Nanopillar Arrays Electrodeposited on Silicon Substrates Using Porous Alumina Templates

机译:使用多孔氧化铝模板在硅基板上电沉积镍纳米玻璃阵列

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摘要

Nickel nanopillar arrays were electrodeposited onto silicon substrates using porous alumina membranes as a template. The characterization of the samples was done by scanning electron microscopy, X-ray diffraction, and alternating force gradient magnetometry. Ni nanostructures were directly grown on Si by galvanostatic and potentiostatic electrodeposition techniques in three remarkable charge transfer configurations. Differences in the growth mechanisms of the nanopillars were observed, depending on the deposition method. A high correlation between the height of the nanopillars and the charge synthesis was observed irrespective of the electrochemical technique. The magnetization measurements demonstrated a main dependence with the height of the nanopillars. The synthesis of Ni nanosystems with a controllable aspect ratio provides an effective way to produce well-ordered networks for wide scientific applications.
机译:使用多孔氧化铝膜作为模板将镍纳米玻璃阵列电沉积到硅基衬里上。样品的表征是通过扫描电子显微镜,X射线衍射和交替力梯度磁体进行的。在三种显着的电荷转移配置中,通过电压和电位电沉积技术直接在Si上直接生长。根据沉积方法,观察纳米玻璃纳米钾的生长机制的差异。无论电化学技术如何,都观察到纳米玻璃瓶的高度与电荷合成之间的高相关性。磁化测量结果表明主要依赖性与纳米粒子的高度。具有可控纵横比的Ni纳米系统的合成提供了生产用于广泛科学应用的有序网络的有效方法。

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