Formation, Manipulation, and Elasticity Measurement of a Nanometric Column of Water Molecules
Fluid Dynamics
2009-11-11 v1 General Physics
Abstract
Nanometer-sized columns of condensed water molecules are created by an atomic-resolution force microscope operated in ambient conditions. Unusual stepwise decrease of the force gradient associated with the thin water bridge in the tip-substrate gap is observed during its stretch, exhibiting regularity in step heights (~0.5 N/m) and plateau lengths (~1 nm). Such "quantized" elasticity is indicative of the atomic-scale stick-slip at the tip-water interface. A thermodynamic-instability-induced rupture of the water meniscus (5-nm long and 2.6-nm wide) is also found. This work opens a high-resolution study of the structure and the interface dynamics of a nanometric aqueous column.
Keywords
Cite
@article{arxiv.physics/0503165,
title = {Formation, Manipulation, and Elasticity Measurement of a Nanometric Column of Water Molecules},
author = {H. Choe and M. -H. Hong and Y. Seo and K. Lee and G. Kim and Y. Cho and J. Ihm and and W. Jhe},
journal= {arXiv preprint arXiv:physics/0503165},
year = {2009}
}
Comments
4 pages, 3 figures