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Evolution of Dip-Pen Nanolithography (DPN): From Molecular Patterning to Materials Discovery

机译:浸渍笔纳米光刻(DPN)的演变:从分子图案到材料发现

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摘要

Dip-pen nanolithography (DPN) is a nanofabrication technique that can be used to directly write molecular patterns on substrates with high resolution and registration. Over the past two decades, DPN has evolved in its ability to transport molecular and material "inks" (e.g., alkanethiols, biological molecules like DNA, viruses, and proteins, polymers, and nanoparticles) to many surfaces in a high-throughput fashion, enabling the synthesis and study of complex chemical and biological structures. In addition, DPN has laid the foundation for a series of related scanning probe methodologies, for example, polymer pen lithography (PPL), scanning probe block copolymer lithography (SPBCL), and beam-pen lithography (BPL), which do not rely on cantilever tips. Structures prepared with these methodologies have been used to understand the consequences of miniaturization and open a door to new capabilities in catalysis, optics, biomedicine, and chemical synthesis, where, in sum, a process originally intended to compete with tools used by the semiconductor industry for rapid prototyping has transcended that application to advanced materials discovery. This review outlines the major DPN advances, the subsequent methods based on the technique, and the opportunities for future fundamental and technological exploration. Most importantly, it commemorates the 20th anniversary of the discovery of DPN.
机译:浸渍笔纳米光刻(DPN)是一种纳米制作技术,可用于直接在具有高分辨率和配准的基材上写入分子模式。在过去的二十年中,DPN已经进化了其能够以高通量方式将分子和物质“(例如,烷硫醇,DNA,病毒和蛋白质,聚合物,聚合物,聚合物,聚合物和纳米颗粒等墨水,病毒和蛋白质,聚合物和纳米颗粒)的能力发展到许多表面上,能够合成和研究复杂化学和生物结构。此外,DPN为一系列相关的扫描探针方法奠定了基础,例如,聚合物笔光刻(PPL),扫描探针嵌段共聚物光刻(SPBCL),以及梁笔光刻(BPL),其不依赖于此悬臂提示。用这些方法制备的结构已被用于了解小型化的后果,并在催化作用,光学,生物医生和化学合成中对新能力开放的后果,总和的过程最初用于与半导体行业使用的工具竞争的过程对于快速原型设计,已将其超越该应用于先进材料发现。本次审查概述了大型DPN的推进,后续方法基于该技术,以及未来基础和技术勘探的机会。最重要的是,它纪念DPN发现的20周年。

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  • 来源
    《Chemical Reviews》 |2020年第13期|共39页
  • 作者单位

    Hong Kong Polytech Univ Res Ctr Smart Wearable Technol Lab Adv Interfacial Mat &

    Devices Inst Text &

    Clothing Hong Kong Peoples R China;

    Northwestern Univ Dept Chem 2145 Sheridan Rd Evanston IL 60208 USA;

    Hong Kong Polytech Univ Res Ctr Smart Wearable Technol Lab Adv Interfacial Mat &

    Devices Inst Text &

    Clothing Hong Kong Peoples R China;

    Northwestern Univ Dept Chem 2145 Sheridan Rd Evanston IL 60208 USA;

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  • 正文语种 eng
  • 中图分类 化学;
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