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Write-read 3D patterning with a dual-channel nanopipette

机译:使用双通道纳米移液器进行读写式3D图案化

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摘要

Nanopipettes are becoming extremely versatile and powerful tools in nanoscience for a wide variety of applications from imaging to nanoscale sensing. Herein, the capabilities of nanopipettes to architect and build complex free-standing three-dimensional (3D) nanostructures are demonstrated using a simple double-barrel nanopipette device. Electrochemical control of ionic fluxes enables highly localized delivery of precursor species from one channel and simultaneous (dynamic and responsive) ion conductance probe-to-substrate distance feedback with the other for reliable high-quality patterning. Nanopipettes with 30−50 nm tip opening dimensions of each channel allowed confinement of ionic fluxes for the fabrication of high aspect ratio copper pillars, zigzag and Γ-like structures, as well as permitting the subsequent topographical mapping of the patterned features with the same nanopipette probe as used for nanostructure engineering. This approach offers versatility and robustness for high resolution 3D “printing” (writing) and read-out at the nanoscale.udud
机译:纳米移液器正在成为纳米科学中极为通用和强大的工具,可用于从成像到纳米级传感的各种应用。本文中,使用简单的双桶纳米移液器设备展示了纳米移液器设计和构建复杂的独立式三维(3D)纳米结构的能力。离子通量的电化学控制可实现从一个通道高度本地化传输前体物质,并同时(动态和响应性)离子电导探针到基底的距离反馈,以及另一个通道的反馈,从而实现可靠的高质量构图。每个通道的尖端开口尺寸为30−50 nm的纳米移液器可以限制离子通量,以制造高深宽比的铜柱,锯齿形和Γ状结构,并允许使用相同的纳米移液器对图形化特征进行后续地形图绘制用于纳米结构工程的探针。这种方法为纳米级的高分辨率3D“打印”(书写)和读出提供了多功能性和鲁棒性。 ud ud

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