Study of the Method of Electro-Crystallization and the Study of Effective Factors in the Production of Nanostructures in this Method

Sherzaman Hamidi, Bashirullah Safi, Abdul Waheed
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引用次数: 1

Abstract

Due to the fact that nanostructures have very high-performance capabilities in various scientific and industrial fields, during the last few years these nanostructures have become available for production in order to produce particulate matter with appropriate composition and distribution. One of the focal points of the current study is the exploration of a number of different researches carried in the field. Considering that the method of electro crystallization compared to other methods available for the production of nanostructures is relatively new, this study gives a brief overview of the effective methods of electro crystallization and the effective parameters in the production of nanostructures produced at high speed, the integrity of materials and the sustainability of particles produced, the diversity in production, low cost and simple use of equipment. The findings of the study are presented that explore the effective parameters in the production of nanostructures, the voltage applied, the time it takes, the concentration of electrolyte and the temperature. The findings further show that the factors of change in voltage and oxidation has the greatest effect on the morphology and particle size. Moreover, the increase in voltage is due to the rapid increase in the speed that leads to the production of resistive crystalline sediments.
电结晶法制备纳米结构的研究及影响因素的研究
由于纳米结构在各种科学和工业领域具有非常高性能的能力,在过去的几年里,这些纳米结构已经可以用于生产具有适当成分和分布的颗粒物质。当前研究的焦点之一是对该领域进行的一些不同研究的探索。考虑到电结晶方法相对于其他可用于生产纳米结构的方法是相对较新的,本研究简要概述了电结晶的有效方法和有效参数,以高速生产纳米结构,材料的完整性和所生产的颗粒的可持续性,生产的多样性,低成本和设备的简单使用。研究结果探讨了制备纳米结构的有效参数:施加的电压、所需的时间、电解质的浓度和温度。研究结果进一步表明,电压和氧化的变化对形貌和粒径的影响最大。此外,电压的增加是由于速度的快速增加导致电阻性结晶沉积物的产生。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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