固体表面纳米结构的形成

Alexander V. Vakhrushev
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引用次数: 0

摘要

在固体表面形成纳米结构是一种很有前途的纳米技术。已经确定,由于纳米结构的形成,固体表面原子结构的变化不仅会导致表面各种物理性能的显着变化,而且会增加其耐久性、强度、硬度和耐磨性。在固体表面形成纳米结构有许多不同的方法:用纳米元素(纳米颗粒、富勒烯和富勒烯、石墨烯和纳米管)进行表面改性、在表面形成纳米复合层、在表面形成量子点和晶须、在固体表面注入离子、激光表面处理等工艺。上述过程非常复杂,需要通过实验和数学建模的理论方法对其进行详细的研究。本章的目的是提供在固体表面形成纳米结构的不同方法的比较回顾和这些过程的各个方面的数学建模。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Formation of Nanostructures on the Solid Surface
Forming nanostructures on the solids surface is one of the promising nanotechnological processes. It has been established that changes in the atomic structure of the solid surface due to the nanostructures formation result both in a significant change in various physical properties of the surface, and in an increase in its durability, strength, hardness, wear resistance. There are many different methods for forming nanostructures on solid surfaces: surface modification with nano-elements (nanoparticles, fullerenes and fullerites, graphene and nanotubes), formation of a nanocomposite layer on the surface, forming quantum dots and whiskers on the surface, implanting ions into the solid surface, laser surface treatment and other processes. The above processes are very complex and for their optimization require detailed research both by experimental and theoretical methods of mathematical modeling. The aim of this chapter was to provide a comparative review of different methods of forming nanostructures on the solids surface and mathematical modeling of these processes various aspects.
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