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A six degree of freedom nanomanipulator design based on carbon nanotube bundles

机译:基于碳纳米管束的六自由度纳米操纵器设计

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Scanning probe imaging and manipulation of matter is of crucial importance for nanoscale science and technology. However, its resolution and ability to manipulate matter at the atomic scale is limited by rather poor control over the fine structure of the probe. In the present paper, a strategy is proposed to construct a molecular nanomanipulator from ultrathin single-walled carbon nanotubes. Covalent modification of a nanotube cap at predetermined atomic sites makes the nanotube act as a support for a functional 'tooltip' molecule. Then, a small bundle of nanotubes (three or four) with aligned ends can act as an extremely high aspect ratio parallel nanomanipulator for a suspended molecule, where protraction or retraction of individual nanotubes results in controlled tilting of the tooltip in two dimensions. Together with the usual scanning probe microscopy three degrees of freedom and augmented with rotation of the system as a whole, the design offers six degrees of freedom for imaging and manipulation of matter with the precision and freedom so much needed for advanced nanotechnology. A similar design might be possible to implement with other high aspect ratio nanostructures, such as oxide nanowires.
机译:扫描探针成像和物质处理对于纳米科学技术至关重要。但是,其分辨率和在原子尺度上操纵物质的能力受到对探针精细结构的较差控制的限制。本文提出了一种由超薄单壁碳纳米管构建分子纳米操纵器的策略。在预定原子位点对纳米管帽进行共价修饰使纳米管充当功能性“工具提示”分子的支持。然后,一小束具有对齐末端的纳米管(三个或四个)可以用作悬浮分子的极高纵横比的平行纳米操纵器,其中单个纳米管的伸出或缩回导致工具提示在二维上的受控倾斜。与普通的扫描探针显微镜一起具有三个自由度,并随着整个系统的旋转而增强,该设计提供了六种自由度,用于物质的成像和处理,而先进纳米技术则需要如此精确和自由。用其他高长宽比的纳米结构,例如氧化物纳米线,可以实现类似的设计。

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