Self-propulsion of Leidenfrost Drops between Non-Parallel Structures
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[1] C. Luo,et al. Conditions for Barrel and Clam-Shell Liquid Drops to Move on Bio-inspired Conical Wires , 2017, Scientific Reports.
[2] C. Luo,et al. Self-Rotation-Induced Propulsion of a Leidenfrost Drop on a Ratchet. , 2017, Langmuir : the ACS journal of surfaces and colloids.
[3] Haitao Zhu,et al. Reversible self-propelled Leidenfrost droplets on ratchet surfaces , 2017 .
[4] E. Fried,et al. Behavior of self-propelled acetone droplets in a Leidenfrost state on liquid substrates , 2017, 1702.03162.
[5] C. Clanet,et al. Aerodynamic Leidenfrost effect , 2016 .
[6] Jian Hou,et al. Curvature-driven bubbles or droplets on the spiral surface , 2016, Scientific Reports.
[7] G. Wells,et al. A sublimation heat engine , 2015, Nature Communications.
[8] C. Luo,et al. Liquid drop runs upward between two nonparallel plates. , 2015, Langmuir : the ACS journal of surfaces and colloids.
[9] Cheng Luo,et al. Bioinspired plate-based fog collectors. , 2014, ACS applied materials & interfaces.
[10] Chengcheng Liu,et al. Directional Drop Transport Achieved on High‐Temperature Anisotropic Wetting Surfaces , 2014, Advanced materials.
[11] C. Luo,et al. Separation of oil from a water/oil mixed drop using two nonparallel plates. , 2014, Langmuir : the ACS journal of surfaces and colloids.
[12] Cheng Luo,et al. Behavior of a liquid drop between two nonparallel plates. , 2014, Langmuir : the ACS journal of surfaces and colloids.
[13] Cheng Luo,et al. Branched ZnO wire structures for water collection inspired by cacti. , 2014, ACS applied materials & interfaces.
[14] Rebecca L. Agapov,et al. Asymmetric wettability of nanostructures directs leidenfrost droplets. , 2014, ACS nano.
[15] C. Clanet,et al. Propulsion on a superhydrophobic ratchet , 2013, Scientific Reports.
[16] Neelesh A. Patankar,et al. Stabilization of Leidenfrost vapour layer by textured superhydrophobic surfaces , 2012, Nature.
[17] Adriana I. Pesci,et al. A ratchet trap for Leidenfrost drops , 2012, Journal of Fluid Mechanics.
[18] Lei Jiang,et al. A multi-structural and multi-functional integrated fog collection system in cactus , 2012, Nature Communications.
[19] C. Clanet,et al. Viscous mechanism for Leidenfrost propulsion on a ratchet , 2011 .
[20] Christophe Clanet,et al. Leidenfrost on a ratchet , 2011 .
[21] Xinchuan Liu,et al. Transition from Cassie–Baxter to Wenzel States on microline-formed PDMS surfaces induced by evaporation or pressing of water droplets , 2011 .
[22] Jin Zhai,et al. Directional water collection on wetted spider silk , 2010, Nature.
[23] Cheng Luo,et al. Dramatic squat and trim phenomena of mm-scaled SU-8 boats induced by Marangoni effect , 2010 .
[24] G. Neitzel,et al. Optical levitation and transport of microdroplets: Proof of concept , 2008 .
[25] Hao Li,et al. Propulsion of microboats using isopropyl alcohol as a propellant , 2008 .
[26] J. Masero,et al. SMALL-PREY PROFITABILITY: FIELD ANALYSIS OF SHOREBIRDS’ USE OF SURFACE TENSION OF WATER TO TRANSPORT PREY , 2007 .
[27] B. Alemán,et al. Self-propelled Leidenfrost droplets. , 2006, Physical review letters.
[28] D. Quéré,et al. Drops on a conical wire , 2004, Journal of Fluid Mechanics.
[29] D. Quéré,et al. Self-propelling slugs , 2002, Journal of Fluid Mechanics.
[30] M. Rubega. Surface tension prey transport in shorebirds: how widespread is it? , 1997 .
[31] R. Takaki,et al. Mechanism of Self-Induced Vibration of a Liquid Drop Based on the Surface Tension Fluctuation. , 1994 .
[32] B. S. Obst,et al. Surface-Tension Feeding in Phalaropes: Discovery of a Novel Feeding Mechanism , 1993 .
[33] G. Zweers. Transformation of avian feeding mechanisms: A deductive method , 1991 .
[34] B. N. Volkov,et al. International Tables of the Surface Tension of Water , 1983 .
[35] B. Carroll. The accurate measurement of contact angle, phase contact areas, drop volume, and Laplace excess pressure in drop-on-fiber systems , 1976 .
[36] S. J. Board,et al. Inverse Leidenfrost Phenomenon , 1969, Nature.
[37] Johann Gottlob Leidenfrost. On the fixation of water in diverse fire , 1966 .
[38] Kenneth J. Bell,et al. The leidenfrost phenomenon: film boiling of liquid droplets on a flat plate , 1966 .
[39] Ronald J. Adrian,et al. Leidenfrost Dynamics , 2013 .
[40] Melanie Volkamer,et al. Proof of Concept , 2009 .
[41] B. S. Obst,et al. DISCOVERY OF A NOVEL FEEDING MECHANISM , 2003 .
[42] S. Yariv,et al. Physical Chemistry of Surfaces , 1979 .
[43] John Stuart Mill,et al. Of the Deductive Method , 1846 .