Vidal-Álvarez Gabriel, Agustí Jordi, Torres Francesc, Abadal Gabriel, Barniol Núria, Llobet Jordi, Sansa Marc, Fernández-Regúlez Marta, Pérez-Murano Francesc, San Paulo Álvaro, Gottlieb Oded
Departament d'Enginyeria Electrònica, Universitat Autònoma de Barcelona, 08193, Cerdanyola del Vallès, Spain.
Nanotechnology. 2015 Apr 10;26(14):145502. doi: 10.1088/0957-4484/26/14/145502. Epub 2015 Mar 18.
A stepped cantilever composed of a bottom-up silicon nanowire coupled to a top-down silicon microcantilever electrostatically actuated and with capacitive or optical readout is fabricated and analyzed, both theoretically and experimentally, for mass sensing applications. The mass sensitivity at the nanowire free end and the frequency resolution considering thermomechanical noise are computed for different nanowire dimensions. The results obtained show that the coupled structure presents a very good mass sensitivity thanks to the nanowire, where the mass depositions take place, while also presenting a very good frequency resolution due to the microcantilever, where the transduction is carried out. A two-fold improvement in mass sensitivity with respect to that of the microcantilever standalone is experimentally demonstrated, and at least an order-of-magnitude improvement is theoretically predicted, only changing the nanowire length. Very close frequency resolutions are experimentally measured and theoretically predicted for a standalone microcantilever and for a microcantilever-nanowire coupled system. Thus, an improvement in mass sensing resolution of the microcantilever-nanowire stepped cantilever is demonstrated with respect to that of the microcantilever standalone.
制备了一种阶梯式悬臂梁,它由底部向上的硅纳米线与顶部向下的硅微悬臂梁耦合而成,通过静电驱动,并具有电容式或光学读出功能,针对质量传感应用进行了理论和实验分析。针对不同的纳米线尺寸,计算了纳米线自由端的质量灵敏度以及考虑热机械噪声的频率分辨率。所得结果表明,由于纳米线是质量沉积发生的位置,耦合结构具有非常好的质量灵敏度,同时由于微悬臂梁是进行转换的位置,耦合结构也具有非常好的频率分辨率。实验证明,相对于单独的微悬臂梁,质量灵敏度提高了两倍,并且理论预测仅改变纳米线长度至少能提高一个数量级。对于单独的微悬臂梁和微悬臂梁 - 纳米线耦合系统,实验测量和理论预测的频率分辨率非常接近。因此,相对于单独的微悬臂梁,微悬臂梁 - 纳米线阶梯式悬臂梁的质量传感分辨率得到了提高。