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首页> 外文期刊>Carbon: An International Journal Sponsored by the American Carbon Society >Switching dynamics of morphology-structure in chemically deposited carbon films - A new insight
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Switching dynamics of morphology-structure in chemically deposited carbon films - A new insight

机译:化学沉积碳膜膜形态结构的切换动力学 - 一种新的洞察力

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Carbon is one of the most investigated materials and shows chaotic behavior in terms of evolving structure. Synthesizing carbon materials largely depend on the deposition technique, process parameters, condition of substrate surface and ratio of the gaseous chemistry. A variety of techniques have been employed to depositing carbon films from various gaseous mixtures to different substrate materials. In this study, carbon thin and thick films are discussed for different techniques known as hot filament chemical vapor deposition and microwave plasma chemical vapor deposition where their synthesis process has been explained in a new context. Here, we discuss attained dynamics of atoms (or their tiny grains) amalgamating into a particular phase of grain or crystallite and electron-dynamics responsible for binding atoms in the formation of all sorts of tiny grains, grains and crystallites controlling overall morphology-structure of films thickness at few nanometers to several microns. Carbon atoms when in solid state, on amalgamation at flat surface result into bind under uniform electron-dynamics and when the amalgamation is at uneven surface, (even at atomic level) they result into bind under non-uniform electron-dynamics. Where binding of atoms is at uniform electron-dynamics, a graphitic structure evolves following by different modifications into other carbon phases depending on the orientation of electron states with respect to centre of inner part of atom known as nucleus. Substrates under appropriate surface defects or abrasion result into an improved rate of nucleation of tiny grains, hence, their increased rate of growth. This study embarks on unexplored science of carbon films where in addition to localized process parameters nature of substrate also influence dynamics of formation of tiny clusters, grains and crystallites at their initial stage of formation. Our results and discussions enlighten us to revisit the nucleation and growth mechanisms of different sorts of films deposit at any scale and at any substrate surface constituting different composition. (C) 2017 Elsevier Ltd. All rights reserved.
机译:碳是最受研究的材料之一,并且在不断发展的结构方面表现出混沌行为。合成碳材料在很大程度上取决于沉积技术,工艺参数,基材表面条件和气态化学的比例。已经采用各种技术从各种气态混合物沉积碳膜到不同的基底材料。在该研究中,讨论了碳薄和厚的薄膜,用于称为热丝化学气相沉积的不同技术和微波等离子体化学气相沉积,其中在新的背景下已经解释了它们的合成过程。在这里,我们讨论了达到的原子(或它们的微小晶粒)的动态化晶粒或微晶和微晶和电子动力学的特定阶段,其负责形成各种微小的谷物,晶粒和微晶控制整体形态学 - 结构的结合原子薄膜厚度少数纳米到几微米。碳原子在固态时,在平坦表面的融合中,在均匀的电子动力学下搅拌结合,当搅拌在表面不平坦表面时,它们在非均匀的电子动力学下导致结合。当原子的结合处于均匀的电子动力学时,图形结构在根据电子状态相对于被称为核的内部的内部的中心的方向来改变对其他碳相的不同修饰。在适当的表面缺陷或磨损的基材中造成了微小谷物的成核速度提高,因此增长率增加。本研究开始了碳膜的未开发科学,其中除了局部过程参数外,基材的性质还影响其在其初始形成阶段形成微粒,晶粒和微晶的形成。我们的结果和讨论启发了我们在任何规模和构成不同组成的任何基材表面的任何衬底表面上重新审视不同类型的薄膜沉积的成核和生长机制。 (c)2017 Elsevier Ltd.保留所有权利。

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