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Nanofountain probe as a microsystem platform for the nanofabrication of bio and nanosystems.

机译:纳米喷泉探针是用于生物和纳米系统纳米加工的微系统平台。

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摘要

The capability of highly localized patterning of biomolecules and nanoparticles on surfaces permits nanofabrication of functionalized structures that serve as templates to guide the assembly of biological and nanosensors. This dissertation presents the consideration on the development of nanopatterning and surface engineering methods in a scanning probe-based approach.; Originated from atomic force microscope (AFM) cantilevers, a new microfluidic probe, named nanofountain probe (NFP), that is capable of sub-100 nm resolution of molecular writing and continuous sample feeding is presented. Design issues are discussed to implement the requirements for the probe. Microfabrication sequences are established to build NFP chips that integrate microfluidic components permitting continuous feeding and high-resolution writing. Experimental examinations of the NFP prove the capabilities of nanopatterning of biomolecules and nanoparticles on surfaces. Progressive development expands the capabilities of the NFP arranged as linear arrays to allow multiple-tip, multiple-ink patterning in parallel operation. Proof-of-concept experiments on the independent actuation of NFP are discussed in relation to the future integration on the arrays of NFP for massively parallel operation. Conceptual design of a two-dimensional NFP array and its operating scheme represent efforts to increase the throughput.; Additional study includes the development of an AFM tip made of diamond to address the tip wear caused by the contact-mode scanning probe techniques. A diamond probe monolithically integrated with a tip is microfabricated using a molding technique. A series of tests demonstrate the advantages of the developed probe such as wear resistance, molecular writing, electrical conductivity, and robustness. Future integration with NFP tips to allow an extended life-cycle is also discussed.; The NFP proves to be a bottom-up nanofabrication tool with the capabilities of high-resolution writing and microfluidic continuous feeding. The device extends to parallel arrays for multiple-tip, multiple-ink patterning. Such evolution envisions NFP as a high-throughput production tool for nano and biosystems.
机译:在表面上对生物分子和纳米颗粒进行高度局部图案化的能力允许对功能化结构进行纳米加工,该结构可作为模板来指导生物和纳米传感器的组装。本文提出了基于扫描探针的纳米图案和表面工程方法发展的考虑。源自原子力显微镜(AFM)悬臂的新型微流体探针,称为纳米喷泉探针(NFP),能够实现小于100 nm的分子书写分辨率和连续进样。讨论了设计问题以实现探针的要求。建立微细加工序列以构建NFP芯片,这些芯片集成了微流体组件,可实现连续进给和高分辨率写入。 NFP的实验检查证明了在表面上对生物分子和纳米颗粒进行纳米构图的能力。渐进式开发扩展了以线性阵列排列的NFP的功能,以允许在并行操作中进行多笔尖,多墨水图案化。讨论了有关NFP独立致动的概念验证实验,以及与大规模并行操作中NFP阵列未来集成的关系。二维NFP阵列的概念设计及其操作方案代表着提高吞吐量的努力。其他研究包括开发由金刚石制成的AFM尖端,以解决由接触模式扫描探针技术引起的尖端磨损。使用成型技术对与尖端整体集成的金刚石探针进行微加工。一系列测试证明了开发的探头的优势,例如耐磨性,分子书写,导电性和坚固性。还讨论了与NFP技巧的未来集成,以延长生命周期。 NFP被证明是一种自底向上的纳米加工工具,具有高分辨率书写和微流体连续进给的功能。该设备扩展到并行阵列,以进行多笔尖,多墨水图案化。这种演变使NFP成为纳米和生物系统的高通量生产工具。

著录项

  • 作者

    Kim, Keun-Ho.;

  • 作者单位

    Northwestern University.;

  • 授予单位 Northwestern University.;
  • 学科 Engineering Mechanical.
  • 学位 Ph.D.
  • 年度 2006
  • 页码 107 p.
  • 总页数 107
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 机械、仪表工业;
  • 关键词

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