Dr Yawei Liu

Postdoctoral Research Associate

F11 - Chemistry Building
The University of Sydney

Telephone +61 2 9351 3533
Fax +61 2 9351 3329

Website google scholar
ORCID

Selected publications

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Journals

  • Xiao, Q., Liu, Y., Guo, Z., Liu, Z., Zhang, X. (2017). How nanobubbles lose stability: Effects of surfactants. Applied Physics Letters, 111(13), 131601-1-131601-5. [More Information]
  • Liu, Y., Zhang, X. (2017). Molecular dynamics simulation of nanobubble nucleation on rough surfaces. Journal of Chemical Physics, 146(16), 1164704-1-5164704-5. [More Information]
  • Ganti, R., Liu, Y., Frenkel, D. (2017). Molecular simulation of thermo-osmotic slip. Physical Review Letters, 119, 038002-1-038002-5. [More Information]
  • Xiao, Q., Liu, Y., Guo, Z., Liu, Z., Lohse, D., Zhang, X. (2017). Solvent Exchange Leading to Nanobubble Nucleation: A Molecular Dynamics Study. Langmuir, 33(32), 8090-8096. [More Information]
  • Guo, Z., Liu, Y., Xiao, Q., Zhang, X. (2016). Hidden Nanobubbles in Undersaturated Liquids. Langmuir, 32(43), 11328-11334. [More Information]
  • Guo, Z., Liu, Y., Xiao, Q., Schonherr, H., Zhang, X. (2016). Modeling the Interaction between AFM Tips and Pinned Surface Nanobubbles. Langmuir, 32(3), 751-758. [More Information]
  • Liu, Y., Zhang, X. (2016). Vapor bridges between solid substrates in the presence of the contact line pinning effect: Stability and capillary force. Journal of Chemical Physics, 145(21), 1-7. [More Information]
  • Liu, Y., Zhang, X. (2016). Vapour-to-liquid nucleation in cone pores. Journal of Chemical Physics, 42(1), 1-8. [More Information]
  • Guo, Z., Liu, Y., Zhang, X. (2015). Constrained lattice density functional theory and its applications on vapor�liquid nucleations. Science Bulletin, 60(3), 320-327. [More Information]
  • van Meel, J., Liu, Y., Frenkel, D. (2015). Mechanism of two-step vapour-crystal nucleation in a pore. Molecular Physics, 113(17-18), 2742-2754. [More Information]
  • Guo, Z., Liu, Y., Lohse, D., Zhang, X., Zhang, X. (2015). Stability of micro-Cassie states on rough substrates. Journal of Chemical Physics, 142(24), 244704-1-244704-9. [More Information]
  • Liu, Y., Zhang, X. (2014). A unified mechanism for the stability of surface nanobubbles: Contact line pinning and supersaturation. Journal of Chemical Physics, 141(13), 1-8. [More Information]
  • Guo, Q., Liu, Y., Jiang, G., Zhang, X. (2014). Condensation of droplets on nanopillared hydrophobic substrates. Soft Matter, 10(8), 1182-1188. [More Information]
  • Liu, Y., Wang, J., Zhang, X., Wang, W. (2014). Contact line pinning and the relationship between nanobubbles and substrates. Journal of Chemical Physics, 140(5), 1-6. [More Information]
  • Liu, Y., Wang, J., Zhang, X. (2013). Accurate determination of the vapor-liquid-solid contact line tension and the viability of Young equation. Scientific Reports, 3, 1-6. [More Information]
  • Guo, Q., Liu, Y., Jiang, G., Zhang, X. (2013). Cooperative effect in nucleation: Nanosized seed particles jointly nucleate vapor-liquid transitions. Journal of Chemical Physics, 138(21), 1-7. [More Information]
  • Liu, Y., Zhang, X. (2013). Evaporation dynamics of nanodroplets and their anomalous stability on rough substrates. Physical Review E, 88(1), 1-6. [More Information]
  • Liu, Y., Zhang, X. (2013). Nanobubble stability induced by contact line pinning. Journal of Chemical Physics, 138(1), 1-5. [More Information]
  • Liu, Y., Men, Y., Zhang, X. (2012). Nucleation mechanism for vapor-to-liquid transition from substrates with nanoscale pores opened at one end. Journal of Chemical Physics, 137(10), 1-7. [More Information]
  • Liu, Y., Men, Y., Zhang, X. (2011). How nanoscale seed particles affect vapor-liquid nucleation. Journal of Chemical Physics, 135(18), 1-7. [More Information]

2017

  • Xiao, Q., Liu, Y., Guo, Z., Liu, Z., Zhang, X. (2017). How nanobubbles lose stability: Effects of surfactants. Applied Physics Letters, 111(13), 131601-1-131601-5. [More Information]
  • Liu, Y., Zhang, X. (2017). Molecular dynamics simulation of nanobubble nucleation on rough surfaces. Journal of Chemical Physics, 146(16), 1164704-1-5164704-5. [More Information]
  • Ganti, R., Liu, Y., Frenkel, D. (2017). Molecular simulation of thermo-osmotic slip. Physical Review Letters, 119, 038002-1-038002-5. [More Information]
  • Xiao, Q., Liu, Y., Guo, Z., Liu, Z., Lohse, D., Zhang, X. (2017). Solvent Exchange Leading to Nanobubble Nucleation: A Molecular Dynamics Study. Langmuir, 33(32), 8090-8096. [More Information]

2016

  • Guo, Z., Liu, Y., Xiao, Q., Zhang, X. (2016). Hidden Nanobubbles in Undersaturated Liquids. Langmuir, 32(43), 11328-11334. [More Information]
  • Guo, Z., Liu, Y., Xiao, Q., Schonherr, H., Zhang, X. (2016). Modeling the Interaction between AFM Tips and Pinned Surface Nanobubbles. Langmuir, 32(3), 751-758. [More Information]
  • Liu, Y., Zhang, X. (2016). Vapor bridges between solid substrates in the presence of the contact line pinning effect: Stability and capillary force. Journal of Chemical Physics, 145(21), 1-7. [More Information]
  • Liu, Y., Zhang, X. (2016). Vapour-to-liquid nucleation in cone pores. Journal of Chemical Physics, 42(1), 1-8. [More Information]

2015

  • Guo, Z., Liu, Y., Zhang, X. (2015). Constrained lattice density functional theory and its applications on vapor�liquid nucleations. Science Bulletin, 60(3), 320-327. [More Information]
  • van Meel, J., Liu, Y., Frenkel, D. (2015). Mechanism of two-step vapour-crystal nucleation in a pore. Molecular Physics, 113(17-18), 2742-2754. [More Information]
  • Guo, Z., Liu, Y., Lohse, D., Zhang, X., Zhang, X. (2015). Stability of micro-Cassie states on rough substrates. Journal of Chemical Physics, 142(24), 244704-1-244704-9. [More Information]

2014

  • Liu, Y., Zhang, X. (2014). A unified mechanism for the stability of surface nanobubbles: Contact line pinning and supersaturation. Journal of Chemical Physics, 141(13), 1-8. [More Information]
  • Guo, Q., Liu, Y., Jiang, G., Zhang, X. (2014). Condensation of droplets on nanopillared hydrophobic substrates. Soft Matter, 10(8), 1182-1188. [More Information]
  • Liu, Y., Wang, J., Zhang, X., Wang, W. (2014). Contact line pinning and the relationship between nanobubbles and substrates. Journal of Chemical Physics, 140(5), 1-6. [More Information]

2013

  • Liu, Y., Wang, J., Zhang, X. (2013). Accurate determination of the vapor-liquid-solid contact line tension and the viability of Young equation. Scientific Reports, 3, 1-6. [More Information]
  • Guo, Q., Liu, Y., Jiang, G., Zhang, X. (2013). Cooperative effect in nucleation: Nanosized seed particles jointly nucleate vapor-liquid transitions. Journal of Chemical Physics, 138(21), 1-7. [More Information]
  • Liu, Y., Zhang, X. (2013). Evaporation dynamics of nanodroplets and their anomalous stability on rough substrates. Physical Review E, 88(1), 1-6. [More Information]
  • Liu, Y., Zhang, X. (2013). Nanobubble stability induced by contact line pinning. Journal of Chemical Physics, 138(1), 1-5. [More Information]

2012

  • Liu, Y., Men, Y., Zhang, X. (2012). Nucleation mechanism for vapor-to-liquid transition from substrates with nanoscale pores opened at one end. Journal of Chemical Physics, 137(10), 1-7. [More Information]

2011

  • Liu, Y., Men, Y., Zhang, X. (2011). How nanoscale seed particles affect vapor-liquid nucleation. Journal of Chemical Physics, 135(18), 1-7. [More Information]

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