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Electrochemical fountain pen nanofabrication of vertically grown platinum nanowires

机译:垂直生长的铂纳米线的电化学钢笔纳米加工

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Local electrochemical deposition of freestanding platinum nanowires was demonstrated with a new approach-electrochemical fountain pen nanofabrication (ec-FPN). The ec-FPN exploits the meniscus formed between an electrolyte-filled nanopipette ('the fountain pen') and a conductive substrate to serve as a confined electrochemical cell for reducing and depositing metal ions. Freestanding Pt nanowires were continuously grown off the substrate by moving the nanopipette away from the substrate while maintaining a stable meniscus between the nanopipette and the nanowire growth front. High quality and high aspect-ratio polycrystalline Pt nanowires with diameter of approx 150 nm and length over 30 mu m were locally grown with ec-FPN. The ec-FPN technique is shown to be an efficient and clean technique for localized fabrication of a variety of vertically grown metal nanowires and can potentially be used for fabricating freeform 3D nanostructures.
机译:独立的铂纳米线的局部电化学沉积已通过一种新方法-电化学钢笔纳米加工(ec-FPN)得到证明。 ec-FPN利用在充满电解质的纳米吸管(“钢笔”)和导电基材之间形成的弯月面,充当用于还原和沉积金属离子的密闭电化学电池。通过将纳米移液器移离基底,同时在纳米移液器和纳米线生长前沿之间保持稳定的弯月面,独立的Pt纳米线从基底上连续生长。使用ec-FPN在本地生长直径约为150 nm,长度超过30μm的高质量,高长宽比的多晶Pt纳米线。已显示ec-FPN技术是一种用于局部制造各种垂直生长的金属纳米线的有效且清洁的技术,可潜在地用于制造自由形式的3D纳米结构。

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