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Hierarchical carbon nanowire microarchitectures made by plasma-assisted pyrolysis of photoresist

机译:等离子体辅助光致抗蚀剂热解制备的分层碳纳米线微体系结构

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摘要

We present a new approach for the fabrication and integration of vertically aligned forests of amorphous carbon nanowires (CNWs), using only standard lithography, oxygen plasma treatment, and thermal processing. The simplicity and scalability of this process, as well as the hierarchical organization of CNWs, provides a potential alternative to the use of carbon nanotubes and graphene for applications in microsystems and high surface area materials. The CNWs are highly branched at the nanoscale, and novel hierarchical microstructures with CNWs connected to a solid amorphous core are made by controlling the plasma treatment time. By multilayer processing we demonstrate deterministic joining of CNW micropillars into 3D sensing networks. Finally we show that these networks can be chemically functionalized and used for measurement of DNA binding with increased sensitivity.
机译:我们提出了一种仅使用标准光刻,氧等离子体处理和热处理来制造和整合无定形碳纳米线(CNW)的垂直排列森林的新方法。此过程的简单性和可伸缩性以及CNW的层次结构,为在微系统和高表面积材料中的应用提供了使用碳纳米管和石墨烯的潜在替代方法。 CNW在纳米级高度分支,并且通过控制等离子体处理时间来制造具有连接到固体非晶核的CNW的新型分层微结构。通过多层处理,我们证明了CNW微柱确定性地加入3D传感网络。最后,我们证明了这些网络可以进行化学功能化,并可以提高灵敏度地用于DNA结合的测量。

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