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DIP PEN NANOLITHOGRAPHY™ (DPN™) FOR NANOMATERIALS DISCOVERY

机译:DIP笔纳米技术(DPN™)用于纳米材料的发现

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摘要

Precision nanoscale deposition is a fundamental requirement for much of current nanoscience research and promises to facilitate exciting industrial applications. Tailoring chemical composition and surface structure on the sub-100 nm scale benefits researchers in topics ranging from catalysis, to biological recognition in nanoscale systems, to electronic connectivity on the nanoscale. Dip Pen Nanolithography (DPN) is a scanning-probe based direct-write technique for generating surface-patterned chemical functionality and discrete structures on the sub-100 nm scale. In this paper we will provide an introduction to DPN's techniques and concepts, and proceed to detail applications of the technology. These include repair technologies, novel biological assay techniques, conductive metal nanostructures, combinatorial arrays, templating techniques, and carbon nanotube manipulation. We will also discuss future application development and directions for the technology, such as functional nanotubeanowire devices. Finally, we will present NanoInk's nanofabrication platform, the NScriptor, and supporting products such as InkWells, multi-pen arrays, and individually addressable active pen arrays.
机译:精确的纳米级沉积是当前许多纳米科学研究的基本要求,并有望促进令人兴奋的工业应用。在低于100 nm的尺度上定制化学成分和表面结构,使研究人员从催化到纳米尺度系统中的生物识别,再到纳米尺度的电子连通性等话题,都对研究人员有利。浸笔式纳米光刻(DPN)是一种基于扫描探针的直接写入技术,用于产生表面图案化的化学官能度和小于100 nm规模的离散结构。在本文中,我们将介绍DPN的技术和概念,并继续详细介绍该技术的应用。这些包括修复技术,新颖的生物测定技术,导电金属纳米结构,组合阵列,模板技术和碳纳米管操作。我们还将讨论功能性纳米管/纳米线器件等未来应用的开发和该技术的方向。最后,我们将展示NanoInk的纳米加工平台NScriptor,以及诸如InkWells,多笔阵列和可单独寻址的有源笔阵列之类的支持产品。

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