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    • 6. 发明授权
    • Embedding a nanotube inside a nanopore for DNA translocation
    • 在纳米孔内嵌入纳米管用于DNA易位
    • US08491769B2
    • 2013-07-23
    • US13611701
    • 2012-09-12
    • Ali Afzali-ArdakaniBinquan LuanHongbo Peng
    • Ali Afzali-ArdakaniBinquan LuanHongbo Peng
    • G01N27/26B82Y40/00
    • B82Y30/00B82Y40/00C12Q1/6869C25D3/665C25D5/028C25D13/04G01N33/48721
    • A technique for embedding a nanotube in a nanopore is provided. A membrane separates a reservoir into a first reservoir part and a second reservoir part, and the nanopore is formed through the membrane for connecting the first and second reservoir parts. An ionic fluid fills the nanopore, the first reservoir part, and the second reservoir part. A first electrode is dipped in the first reservoir part, and a second electrode is dipped in the second reservoir part. Driving the nanotube into the nanopore causes an inner surface of the nanopore to form a covalent bond to an outer surface of the nanotube via an organic coating so that the inner surface of the nanotube will be the new nanopore with a super smooth surface for studying bio-molecules while they translocate through the nanotube.
    • 提供了一种在纳米孔中嵌入纳米管的技术。 膜将储存器分离成第一储存部分和第二储存部分,并且纳米孔通过膜形成,用于连接第一和第二储存部分。 离子流体填充纳米孔,第一储存部分和第二储存部分。 将第一电极浸入第一储存部分中,将第二电极浸入第二储存部分。 将纳米管驱动到纳米孔中导致纳米孔的内表面通过有机涂层与纳米管的外表面形成共价键,使得纳米管的内表面将成为具有超光滑表面的新纳米孔,用于研究生物 分子,同时它们转移通过纳米管。