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Volume 58, Issue 2, Pages 415-420 (January 2010)


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Mechanical characterization of hotplate synthesized vanadium oxide nanobelts

Yanwu Zhua, Yousheng Zhanga, Ling Daia, Fook-Chiong Cheongb, Vincent Tanac, Chorng-Haur SowabCorresponding Author Informationemail address, Chwee-Teck Limacd⁎⁎email address

Received 9 July 2009; received in revised form 8 September 2009; accepted 8 September 2009. published online 25 September 2009.

Abstract 

Vanadium oxide nanobelts have been synthesized on Si or SiN substrates by simply heating vanadium foils on a hotplate. As-grown nanobelts were characterized as V2O5·nH2O (0.3<n<1.7) layer structures containing water molecular intercalation. Using an electromechanical resonance method, the Young’s modulus of the nanobelts was measured in situ in a scanning electron microscope. It was found that the Young’s modulus of as-grown nanobelts varied between 5.6 and 98GPa, with a typical Q-factor of 120. Such scattered values were attributed to the different contents of water molecules in the nanobelts. After annealing at 450°C in vacuum, the nanobelts were converted to α-V2O5 phase and a polycrystalline structure was observed. The Young’s modulus of the annealed nanobelts showed more consistent values at an average of 28.9GPa, lower than the calculated modulus of bulk α-V2O5 at 68GPa.

a National University of Singapore Nanoscience and Nanotechnology Initiative, 2 Engineering Drive 3, Singapore 117581, Singapore

b Department of Physics, National University of Singapore, 2 Science Drive 3, Singapore 117542, Singapore

c Division of Bioengineering, National University of Singapore, 2 Engineering Drive 3, Singapore 117576, Singapore

d Department of Mechanical Engineering, National University of Singapore, 9 Engineering Drive 1, Singapore 117576, Singapore

Corresponding Author InformationCorresponding author.

∗∗ Corresponding author.

PII: S1359-6454(09)00614-4

doi:10.1016/j.actamat.2009.09.018


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