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Surface Nano-Structuring by Adsorption and Chemical Reactions

机译:通过吸附和化学反应的纳米结构

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摘要

Nano-structuring of the surface caused by adsorption of molecules or atoms and by the reaction of surface atoms with adsorbed species is reviewed from a chemistry viewpoint. Self-assembly of adsorbed species is markedly influenced by weak mutual interactions and the local strain of the surface induced by the adsorption. Nano-structuring taking place on the surface is well explained by the notion of a quasi-molecule provided by the reaction of surface atoms with adsorbed species. Self-assembly of quasi-molecules by weak internal bonding provides quasi-compounds on a specific surface. Various nano-structuring phenomena are discussed: (i) self-assembly of adsorbed molecules and atoms; (ii) self-assembly of quasi-compounds; (iii) formation of nano-composite surfaces; (iv) controlled growth of nano-materials on composite surfaces. Nano-structuring processes are not always controlled by energetic feasibility, that is, the formation of nano-composite surface and the growth of nano-particles on surfaces are often controlled by the kinetics. The idea of the “kinetic controlled molding” might be valuable to design nano-materials on surfaces.
机译:从化学观点出发,综述了由分子或原子的吸附以及表面原子与被吸附物质的反应引起的表面的纳米结构。被吸附物质的自组装受到弱相互作用和吸附引起的表面局部应变的显着影响。表面原子发生的纳米结构可以很好地解释为准分子的概念,准分子的概念是表面原子与被吸附物质的反应。通过弱内键的自组装,准分子在特定的表面上提供了准化合物。讨论了各种纳米结构现象:(i)吸附分子和原子的自组装; (ii)准化合物的自组装; (iii)形成纳米复合材料表面; (iv)控制纳米材料在复合材料表面的生长。纳米结构化过程并不总是受到能量可行性的控制,也就是说,纳米复合材料表面的形成和表面上纳米粒子的生长通常受动力学控制。 “动力学控制成型”的思想对于设计表面上的纳米材料可能是有价值的。

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