Fan Rong, Yue Min, Karnik Rohit, Majumdar Arun, Yang Peidong
Department of Chemistry, University of California, Berkeley, California 94720, USA.
Phys Rev Lett. 2005 Aug 19;95(8):086607. doi: 10.1103/PhysRevLett.95.086607.
We report the integration of inorganic nanotubes into metal-oxide-solution field effect transistors (FETs) which exhibit rapid field effect modulation of ionic conductance. Surface functionalization, analogous to doping in semiconductors, can switch the nanofluidic transistors from p-type to ambipolar and n-type field effect transistors. Transient study reveals the kinetics of field effect modulation is controlled by ion-exchange step. Nanofluidic FETs have potential implications in subfemtoliter analytical technology and large-scale nanofluidic integration.
我们报道了将无机纳米管集成到金属氧化物溶液场效应晶体管(FET)中,该晶体管表现出离子电导的快速场效应调制。类似于半导体中的掺杂,表面功能化可将纳米流体晶体管从p型转换为双极型和n型场效应晶体管。瞬态研究表明,场效应调制的动力学由离子交换步骤控制。纳米流体FET在亚飞升分析技术和大规模纳米流体集成方面具有潜在意义。