EME/IN2UB Departament d'Electrònica, Universitat de Barcelona, C/Martíi Franquès 1, E-08028 Barcelona, Spain.
Nanotechnology. 2007 Dec 12;18(49):495501. doi: 10.1088/0957-4484/18/49/495501. Epub 2007 Nov 2.
Individual SnO(2) nanowires were integrated in suspended micromembrane-based bottom-up devices. Electrical contacts between the nanowires and the electrodes were achieved with the help of electron- and ion-beam-assisted direct-write nanolithography processes. The stability of these nanomaterials was evaluated as function of time and applied current, showing that stable and reliable devices were obtained. Furthermore, the possibility of modulating their temperature using the integrated microheater placed in the membrane was also demonstrated, enabling these devices to be used in gas sensing procedures. We present a methodology and general strategy for the fabrication and characterization of portable and reliable nanowire-based devices.
单个 SnO(2) 纳米线被集成在悬浮微膜的自下而上的器件中。纳米线与电极之间的电接触是通过电子和离子束辅助的直写纳米光刻工艺实现的。这些纳米材料的稳定性作为时间和施加电流的函数进行了评估,结果表明获得了稳定可靠的器件。此外,还证明了使用置于膜中的集成微加热器来调节其温度的可能性,从而使这些器件能够用于气体感测过程。我们提出了一种用于制造和表征便携式可靠的基于纳米线的器件的方法和一般策略。