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Novel Fast Fabrication of Nano-Structures for Sensor and Flexible Polymer Electronics

机译:用于传感器和柔性聚合物电子学的新型纳米结构快速制备

摘要

Applications of engineered surface nano-structures span several domains. For emerging technologies such as flexible electronics and low cost sensors, the ability to produce large areas of surface nano-structures at high volume economically, can help realize several applications. One approach of achieving high volume production of surface nano-structures economically and reliably is by replication from a master stamp or template. Conventional methods in producing master stamps rely on the lengthy use of scanning-types of patterning tools, such as electron beam lithography and focused ion beam. The duration and cost of patterning limits the practicality in producing large area masters. In this thesis work, a novel method to achieve faster fabrication of master stamps containing original surface nano-structures is proposed and demonstrated. This method creates initial circular patterns of smaller dimensions than the final desired, then subsequently enlarges to the full size using lower cost processes. The time required to pattern the nano-structures through this method is reduced by 3 X compared to the conventional, and can be further optimized to find additional cost savings. The throughput improvement is particularly noticeable for nano-structured regions larger than 1 cm2. The process is correspondingly valuable for users who do not have access to the most advanced, latest and fastest, patterning tools. Exemplar replication techniques such as polymer embossing, casting, and electroforming are also demonstrated and discussed. Analysis on both the original masters and the replicated samples show good pattern transfer and excellent yield. A selected application example on an integrated sensor containing nano-optics is discussed in detail. The nano-optics sensor structures are produced at lower cost than the traditional, while still exhibiting useful sensitivity. This specific application example validate the utility of the improved master stamp fabrication process towards enabling high volume production of large area nano-structures for end applications economically. This thesis identifies the background science and challenges to current technology, discusses the motivation and objectives, methodically contemplates a solution, demonstrates novel stamp fabrication process, discusses replication techniques, examines produced structures, and provides validating application examples.
机译:工程表面纳米结构的应用跨越了多个领域。对于诸如柔性电子学和低成本传感器之类的新兴技术,能够经济地大量生产大面积的表面纳米结构的能力可以帮助实现多种应用。经济且可靠地实现表面纳米结构的大量生产的一种方法是通过从母模或模板复制。制作主图章的常规方法依赖于扫描类型的构图工具的长期使用,例如电子束光刻和聚焦离子束。图案化的持续时间和成本限制了生产大面积母版的实用性。在本文工作中,提出并证明了一种新颖的方法,可以更快地制造包含原始表面纳米结构的母模。该方法创建尺寸小于最终所需尺寸的初始圆形图案,然后使用成本更低的工艺将其放大到完整尺寸。与传统方法相比,通过此方法对纳米结构进行图案化所需的时间减少了3倍,并且可以进一步优化以节省更多成本。对于大于1 cm2的纳米结构区域,吞吐量的提高尤其明显。对于无法使用最先进,最新和最快的图案化工具的用户而言,该过程相对有价值。还演示并讨论了示例性复制技术,例如聚合物压花,浇铸和电铸。对原始原版和复制样品的分析均显示出良好的图案转移和优异的产率。详细讨论了在包含纳米光学器件的集成传感器上的选定应用示例。纳米光学传感器结构的生产成本低于传统传感器,同时仍具有有用的灵敏度。这个特定的应用示例验证了改进的主图章制造工艺的实用性,以实现大批量生产大面积纳米结构以经济地用于最终应用。本文确定了背景科学和对当前技术的挑战,讨论了动机和目标,系统地考虑了解决方案,演示了新颖的邮票制造工艺,讨论了复制技术,检查了生产的结构,并提供了验证性的应用实例。

著录项

  • 作者

    Chuo Yindar Yin Da;

  • 作者单位
  • 年度 2013
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  • 原文格式 PDF
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