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Plasma nanoscience: From nano-solids in plasmas to nano-plasmas in solids

机译:等离子体纳米科学:从等离子体中的纳米固体到固体中的纳米等离子体

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The unique plasma-specific features and physical phenomena in the organization of nanoscale soild-state systems in a broad range of elemental composition, structure, and dimensionality are critically reviewed. These effects lead to the possibility to localize and control energy and matter at nanoscales and to produce self-organized nano-solids with highly unusual and superior properties. A unifying conceptual framework based on the control of production, transport, and self-organization of precursor species is introduced and a variety of plasma-specific non-equilibrium and kinetics-driven phenomena across the many temporal and spatial scales is explained. When the plasma is localized to micrometer and nanometer dimensions, new emergent phenomena arise. The examples range from semiconducting quantum dots and nanowires, chirality control of single-walled carbon nanotubes, ultra-fine manipulation of graphenes, nano-diamond, and organic matter to nano-plasma effects and nano-plasmas of different states of matter.
机译:严格审查了纳米结构的污染状态系统在各种元素组成,结构和尺寸方面的独特的特定于等离子体的特征和物理现象。这些效应导致可能在纳米级定位和控制能量和物质,并产生具有非常不同寻常和优越性能的自组织纳米固体。介绍了基于对前体物质的生产,运输和自组织的控制的统一概念框架,并解释了在许多时空尺度上各种等离子体特定的非平衡和动力学驱动现象。当等离子体局限于微米和纳米尺寸时,会出现新的出现现象。示例包括半导体量子点和纳米线,单壁碳纳米管的手性控制,石墨烯,纳米金刚石和有机物的超精细处理,以及不同物质状态的纳米等离子体效应和纳米等离子体。

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