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Carbon Nanotube-Based Permeable Membranes

机译:碳纳米管基渗透膜

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摘要

A membrane of multiwall carbon nanotubes embedded in a silicon nitride matrix was fabricated for use in studying fluid mechanics on the nanometer scale. Characterization by fluorescent tracer diffusion and scanning electron microscopy suggests that the membrane is void-free near the silicon substrate on which it rests, implying that the hollow core of the nanotube is the only conduction path for molecular transport. Assuming Knudsen diffusion through this nanotube membrane, a maximum helium transport rate (for a pressure drop of 1 atm) of 0.25 cc/sec is predicted. Helium flow measurements of a nanoporous silicon nitride membrane, fabricated by sacrificial removal of carbon, give a flow rate greater than 1x10~(-6) cc/sec. For viscous, laminar flow conditions, water is estimated to flow across the nanotube membrane (under a 1 atm pressure drop) at up to 2.8x10~(-5) cc/sec (1.7 μL/min).
机译:制备了嵌入氮化硅基质中的多壁碳纳米管膜,用于研究纳米尺度的流体力学。通过荧光示踪剂扩散和扫描电子显微镜的表征表明,该膜在其所处的硅基底附近是无空隙的,这意味着纳米管的中空核是分子运输的唯一传导路径。假设克努德森扩散通过该纳米管膜,预计最大氦气传输速率(对于1个大气压的压降)为0.25 cc / sec。通过牺牲性去除碳制成的纳米多孔氮化硅膜的氦气流量测量结果表明,其流速大于1x10〜(-6)cc / sec。对于粘性的层流条件,估计水以高达2.8x10〜(-5)cc / sec(1.7μL/ min)的速度流过纳米管膜(在1个大气压下)。

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