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Avalanche annealing and anodization effects on structural properties of short-period C/SiC super lattices

机译:雪崩退火和阳极氧化对短周期C / SiC超晶格结构性能的影响

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To date, a great number of investigations have been devoted to studying the physical properties of carbon structures and technological processes providing the basis for their formation. This is connected with the wide variety and unique properties of carbon compounds, which have determined their widespread practical use in areas from nanoelectronics to spacecrafts. However, the preparation of various carbon modifications within a unified technology is a complicated problem, which remains still unsolved. Previously, the authors have shown that the periodic potential built-in the structure by alternation of layers with different band gap can affect the crystalline modification the substance crystallized. The prepared superlattices are also characterized by the existence of built-in periodic potential, which can control the formation of a specific carbon modification.
机译:迄今为止,已经进行了大量的研究来研究碳结构的物理性质和工艺过程,为其形成基础。这与碳化合物的多种多样和独特的特性有关,这些特性决定了它们在从纳米电子到航天器等领域的广泛实际应用。但是,在统一的技术中准备各种碳修饰物是一个复杂的问题,仍然没有解决。以前,作者已经表明,通过交替改变带隙不同的层而在结构中建立的周期性电势会影响该物质结晶的晶体修饰。制备的超晶格还具有内置周期性电势的特征,该周期性电势可以控制特定碳修饰的形成。

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