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Method for simple fluid engineering of nanopore

机译:纳米孔的简单流体工程方法

摘要

Aspects disclosed herein are methods of mass manufacturing an array of biological sensing devices on a substrate, each of the biological sensing devices having a vertical or horizontal membrane, the membrane having one or more solid state nanopores through it. , And methods for simple hydrodynamic treatment of each nanopore. In one aspect, a method for forming nanopores by applying a voltage from a positive electrode to a negative electrode through a freestanding membrane is disclosed. In other aspects, a method for forming a plurality of nanopores on a wafer is disclosed. In another aspect, a single side processing method for forming a nanopore device is disclosed for providing a device having baths on both sides of a nanopore processable from a single side of a substrate. In another aspect, a method for fluidically processing a plurality of nanopore devices is disclosed.
机译:本文公开的方面是在基板上大量制造生物感测装置的阵列的方法,每个生物感测装置具有垂直或水平膜,该膜具有穿过其的一个或多个固态纳米孔。 ,以及用于每个纳米孔的简单流体动力学处理的方法。在一个方面,公开了一种用于通过自立膜将电压从正电极施加至负电极来形成纳米孔的方法。在其他方面,公开了一种在晶片上形成多个纳米孔的方法。在另一方面,公开了一种用于形成纳米孔装置的单面处理方法,其提供了一种装置,该装置在纳米孔的两侧上具有可从基板的单面进行处理的浴。在另一方面,公开了一种用于流体处理多个纳米孔装置的方法。

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