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用于力和质量传感应用的银镓纳米线的特性研究。

Characterization of silver-gallium nanowires for force and mass sensing applications.

机构信息

Department of Physics, Purdue University, W. Lafayette, IN 47907, USA.

出版信息

Nanotechnology. 2010 Jul 30;21(30):305701. doi: 10.1088/0957-4484/21/30/305701. Epub 2010 Jul 6.

Abstract

We investigate the mechanical properties of cantilevered silver-gallium (Ag(2)Ga) nanowires using laser Doppler vibrometry. From measurements of the resonant frequencies and associated operating deflection shapes, we demonstrate that these Ag(2)Ga nanowires behave as ideal Euler-Bernoulli beams. Furthermore, radial asymmetries in these nanowires are detected through high resolution measurements of the vibration spectra. These crystalline nanowires possess many ideal characteristics for nanoscale force and mass sensing, including small spring constants (as low as 10(-4) N m(-1)), high frequency bandwidth with resonance frequencies in the 0.02-10 MHz range, small suspended mass (picograms), and relatively high Q-factors (approximately 2-50) under ambient conditions. We evaluate the utility of Ag(2)Ga nanowires for nanocantilever applications, including ultrasmall mass and high frequency bandwidth piconewton force detection.

摘要

我们使用激光多普勒振动计研究了悬梁式银镓(Ag(2)Ga)纳米线的力学性能。通过测量共振频率和相关的工作变形形状,我们证明这些 Ag(2)Ga 纳米线表现为理想的欧拉-伯努利梁。此外,通过对振动光谱的高分辨率测量,检测到这些纳米线的径向不对称性。这些晶体纳米线具有许多理想的纳米级力和质量传感特性,包括小的弹簧常数(低至 10(-4) N m(-1))、在 0.02-10 MHz 范围内具有高频率带宽的共振频率、小的悬浮质量(皮克)以及在环境条件下相对较高的 Q 因子(约 2-50)。我们评估了 Ag(2)Ga 纳米线在纳米悬臂应用中的实用性,包括超小质量和高频带宽皮牛顿力检测。

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