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Recent advances in DNA-based directed assembly on surfaces

机译:最近的进步基于dna的定向组装表面

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摘要

In the last decade, "small" and "integrated" have been keywords in the field of device fabrication as the desire to exploit nanoscale phenomena and make electronic, photonic and magnetic arrays has grown. In an effort to improve resolution and control costs, much work has been dedicated to developing alternatives to conventional microfabrication technology. For this purpose, biomolecular assembly and DNA nanotechnology in particular are appealing owing to their inherent size and capacity for molecular recognition. Herein, we review recent achievements in DNA-based directed assembly on substrates. These include novel methods for patterning and depositing nanomaterials on DNA-modified surfaces as well as using synthetic DNA nanostructures such as DNA tiles and origami as templates to direct the assembly of nanoscale components. Particular attention is paid to integrating self-assembly with top-down lithography, and some possible directions for future Work are discussed.
机译:在过去的十年中,“小”和“集成”在设备制造领域的关键字随着利用纳米尺度的现象和欲望使电子、光子和磁阵列增长。控制成本,就一直致力于工作发展替代传统精密加工技术。纳米技术在生物分子组装和DNA由于其固有的尤其有吸引力大小和分子识别的能力。在此,我们回顾最近的成就基于dna的定向组装基板上。包括小说的模式和方法dna重组上沉积纳米材料表面以及使用合成DNA纳米结构如DNA瓷砖和折纸作为模板直接组装纳米组件。特别关注集成自组装与自上而下的光刻技术,和一些为未来的工作可能的方向进行了讨论。

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