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Nanomechanical properties of lithiated Si nanowires probed with atomic force microscopy

Cited 10 time in Web of Science Cited 9 time in Scopus
Authors

Lee, Hyunsoo; Shin, Weonho; Choi, Jang Wook; Park, Jeong Young

Issue Date
2012-07
Publisher
Institute of Physics Publishing
Citation
Journal of Physics D: Applied Physics, Vol.45 No.27, p. 275301
Abstract
The nanomechanical properties of fully lithiated and pristine Si nanowires (NWs) deposited on a Si substrate were studied with atomic force microscopy (AFM). Si NWs were synthesized using the vapour-liquid-solid process on stainless-steel substrates using an Au catalyst. Fully lithiated Si NWs were obtained using the electrochemical method, followed by drop-casting on a Si substrate. The roughness of the Si NWs, which was derived from AFM images, is greater for the lithiated Si NWs than for the pristine Si NWs. Force spectroscopy was used to study the influence of lithiation on the tip-surface adhesion force. The lithiated Si NWs revealed a smaller tip-surface adhesion force than the Si substrate by a factor of two, while the adhesion force of the Si NWs is similar to that of the Si substrate. Young's modulus, obtained from the force-distance curve, also shows that the pristine Si NWs have a relatively higher value than the lithiated Si NWs due to the elastically soft and amorphous structures of the lithiated region. These results suggest that force spectroscopy can be used to probe the degree of lithiation at nanometer scale during the charging and discharging processes.
ISSN
0022-3727
URI
https://hdl.handle.net/10371/164552
DOI
https://doi.org/10.1088/0022-3727/45/27/275301
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  • College of Engineering
  • School of Chemical and Biological Engineering
Research Area Carbon nanotube, Graphene, Lithium-ion battery, Lithium-sulfur battery, Silicon anode

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