Goldberger Joshua, Fan Rong, Yang Peidong
Department of Chemistry, University of California, Materials Science Division, Lawrence Berkeley National Laboratory, Berkeley, California 94720, USA.
Acc Chem Res. 2006 Apr;39(4):239-48. doi: 10.1021/ar040274h.
Templating approaches are being developed for the synthesis of inorganic nanotubes, a novel platform for nanofluidics. Single crystalline semiconductor GaN nanotubes have been synthesized using an epitaxial casting method. The partial thermal oxidation of silicon nanowires leads to the synthesis of silica nanotubes. The dimension of these nanotubes can be precisely controlled during the templating process. These inorganic nanotubes can be integrated into metal-oxide solution field effect transistors (MOSolFETs), which exhibit rapid field effect modulation of ionic conductance. These nanofluidic devices have been further demonstrated to be useful for single-molecule sensing, as single DNA molecules can be readily detected either by charge effect or by geometry effect. These inorganic nanotubes will have great implications in subfemtoliter analytical technology and large-scale nanofluidic integration.
目前正在开发用于合成无机纳米管的模板法,无机纳米管是一种用于纳米流体学的新型平台。已经使用外延铸型法合成了单晶半导体氮化镓纳米管。硅纳米线的部分热氧化导致二氧化硅纳米管的合成。这些纳米管的尺寸可以在模板化过程中精确控制。这些无机纳米管可以集成到金属氧化物溶液场效应晶体管(MOSolFET)中,该晶体管表现出离子电导的快速场效应调制。这些纳米流体装置已被进一步证明可用于单分子传感,因为单个DNA分子可以通过电荷效应或几何效应轻松检测到。这些无机纳米管将在亚飞摩尔分析技术和大规模纳米流体集成方面具有重大意义。