Jiankuai Diao
University of Colorado Boulder
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Publication
Featured researches published by Jiankuai Diao.
Journal of Engineering Materials and Technology-transactions of The Asme | 2005
Ken Gall; Jiankuai Diao; Martin L. Dunn; Michael I. Haftel; Noam Bernstein; Michael J. Mehl
First principle, tight binding, and semi-empirical embedded atom calculations are used to investigate a tetragonal phase transformation in gold nanowires. As wire diameter is decreased, tight binding and modified embedded atom simulations predict a surface-stress-induced phase transformation from a face-centered-cubic (fcc) nanowire into a body-centered-tetragonal (bet) nanowire. In bulk gold, all theoretical approaches predict a local energy minimum at the bet phase, but tight binding and first principle calculations predict elastic instability of the bulk bct phase. The predicted existence of the stable bet phase in the nanowires is thus attributed to constraint from surface stresses. The results demonstrate that surface stresses are theoretically capable of inducing phase transformation and subsequent phase stability in nanometer scale metallic wires under appropriate conditions.
Nature Materials | 2003
Jiankuai Diao; Ken Gall; Martin L. Dunn
Journal of The Mechanics and Physics of Solids | 2004
Jiankuai Diao; Ken Gall; Martin L. Dunn
Nano Letters | 2004
Ken Gall; Jiankuai Diao; Martin L. Dunn
Acta Materialia | 2006
Jiankuai Diao; Ken Gall; Martin L. Dunn; Jonathan A. Zimmerman
Nano Letters | 2004
Jiankuai Diao; Ken Gall; Martin L. Dunn
Physical Review B | 2004
Jiankuai Diao; Ken Gall; Martin L. Dunn
Proposed for publication in Proceedings of the Royal Society of London, Series A, Mathematical and Physical Sciences. | 2004
Jonathan A. Zimmerman; Martin L. Dunn; Jiankuai Diao; Ken Gall
Archive | 2006
Martin L. Dunn; Mellisa J. Talmage; David L. McDowell; Neil West; P.M. Gullett; David C. Miller; Kevin Spark; Jiankuai Diao; M.F. Horstemeyer; Jonathan A. Zimmerman; Ken Gall
Bulletin of the American Physical Society | 2005
Michael I. Haftel; Ken Gall; Jiankuai Diao; Noam Bernstein; Michael J. Mehl