Diameter-dependent electromechanical properties of GaN nanowires.

Nam, Chang-Yong; Jaroenapibal, Papot; Tham, Douglas; Luzzi, David E; Evoy, Stephane; Fischer, John E · Nano Lett · 2006

basic_science · Level V

Where this comes from

Abstract

The diameter-dependent Young's modulus, E, and quality factor, Q, of GaN nanowires were measured using electromechanical resonance analysis in a transmission electron microscope. E is close to the theoretical bulk value ( approximately 300 GPa) for a large diameter nanowire (d=84 nm) but is significantly smaller for smaller diameters. At room temperature, Q is as high as 2,800 for d=84 nm, significantly greater than what is obtained from micromachined Si resonators of comparable surface-to-volume ratio. This implies significant advantages of smooth-surfaced GaN nanowire resonators for nanoelectromechanical system (NEMS) applications. Two closely spaced resonances are observed and attributed to the low-symmetry triangular cross section of the nanowires.

Medical subject headings