Abstract
We investigated external-stress-induced metal-insulator phase transitions in cantilevered single-crystal VO2 nanobeams at variable temperatures using a combined theoretical and experimental approach. An atomic force microscope was used to measure the force-displacement curve of the nanobeams, which showed nonlinearity that signifies activation and expansion of domains of a new phase out of the old one. Superelasticity of the VO2 nanobeam and supersaturation of the phase transition were clearly observed and quantified within the general theory of first-order phase transitions. Phase field modeling was employed to understand the energetics of the domain formation. © 2009 The American Physical Society.
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CITATION STYLE
Fan, W., Huang, S., Cao, J., Ertekin, E., Barrett, C., Khanal, D. R., … Wu, J. (2009). Superelastic metal-insulator phase transition in single-crystal VO2 nanobeams. Physical Review B - Condensed Matter and Materials Physics, 80(24). https://doi.org/10.1103/PhysRevB.80.241105
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