纳米孔
纳米
纳米技术
离子束
离子
材料科学
聚焦离子束
制作
离子键合
膜
化学物理
纳米尺度
光电子学
化学
替代医学
有机化学
复合材料
病理
医学
生物化学
作者
Jiali Li,Derek Stein,Ciaran J. McMullan,Daniel Branton,Michael J. Aziz,J. A. Golovchenko
出处
期刊:Nature
[Nature Portfolio]
日期:2001-07-01
卷期号:412 (6843): 166-169
被引量:1667
摘要
Manipulating matter at the nanometre scale is important for many electronic, chemical and biological advances, but present solid-state fabrication methods do not reproducibly achieve dimensional control at the nanometre scale. Here we report a means of fashioning matter at these dimensions that uses low-energy ion beams and reveals surprising atomic transport phenomena that occur in a variety of materials and geometries. The method is implemented in a feedback-controlled sputtering system that provides fine control over ion beam exposure and sample temperature. We call the method "ion-beam sculpting", and apply it to the problem of fabricating a molecular-scale hole, or nanopore, in a thin insulating solid-state membrane. Such pores can serve to localize molecular-scale electrical junctions and switches and function as masks to create other small-scale structures. Nanopores also function as membrane channels in all living systems, where they serve as extremely sensitive electro-mechanical devices that regulate electric potential, ionic flow, and molecular transport across cellular membranes. We show that ion-beam sculpting can be used to fashion an analogous solid-state device: a robust electronic detector consisting of a single nanopore in a Si3N4 membrane, capable of registering single DNA molecules in aqueous solution.
科研通智能强力驱动
Strongly Powered by AbleSci AI