Stoltenberg Randall M, Woolley Adam T
Department of Chemistry and Biochemistry, Brigham Young University, Provo, UT 84602-5700, USA.
Biomed Microdevices. 2004 Jun;6(2):105-11. doi: 10.1023/b:bmmd.0000031746.46801.7d.
DNA-based nanotechnology is a vibrant and expanding field. The specific molecular recognition properties and large aspect ratio of DNA make the molecule a promising template for bottom-up fabrication of nanowires and nanodevices. Fabricating well-defined DNA-templated nanowires requires aligned surface deposition and specific metallization of DNA molecules. DNA localization on surfaces has been achieved by bulk fluid flow or a moving air-water interface, and localization efficiency has been improved by surface modifications that favor DNA-substrate interaction. DNA-templated nanowires have been constructed from gold, silver, copper, palladium, and platinum, and template modifications have allowed the bottom-up construction of a simple electronic nanodevice. These achievements demonstrate the promising feasibility of using bottom-up nanofabrication to create increasingly sophisticated nanodevices.
基于DNA的纳米技术是一个充满活力且不断发展的领域。DNA独特的分子识别特性和较大的长径比,使其成为自下而上制造纳米线和纳米器件的理想模板。制造定义明确的DNA模板纳米线需要DNA分子的定向表面沉积和特定的金属化处理。通过大量流体流动或移动的气-水界面已实现DNA在表面的定位,并且通过有利于DNA-底物相互作用的表面修饰提高了定位效率。已利用金、银、铜、钯和铂构建了DNA模板纳米线,并且模板修饰使得能够自下而上构建简单的电子纳米器件。这些成果证明了利用自下而上的纳米制造来创建日益复杂的纳米器件具有广阔的可行性。