Clustered ribbed-nanoneedle structured copper surfaces with high-efficiency dropwise condensation heat transfer performance.
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Jie Zhu | Yuting Luo | J. Tian | Juan Li | Xuefeng Gao
[1] E. Schmidt,et al. Versuche über die Kondensation von Wasserdampf in Film- und Tropfenform , 1930 .
[2] A new evaluation of the surface tension temperature coefficients for water , 1978 .
[3] J. C. Chen,et al. Fast drop movements resulting from the phase change on a gradient surface. , 2001, Science.
[4] J. Rose. Dropwise condensation theory and experiment: A review , 2002 .
[5] John-Chang Chen,et al. Surface Contact—Its Significance for Multiphase Heat Transfer: Diverse Examples , 2003 .
[6] David Quéré,et al. Non-sticking drops , 2005 .
[7] D. Beysens. Dew nucleation and growth , 2006 .
[8] M. Kalyanaraman,et al. Emergence of superhydrophobic behavior on vertically aligned nanocone arrays , 2007 .
[9] Lei Jiang,et al. In situ investigation on dynamic suspending of microdroplet on lotus leaf and gradient of wettable micro- and nanostructure from water condensation , 2008 .
[10] Tianqing Liu,et al. Effects of surface topography of material on nucleation site density of dropwise condensation , 2008 .
[11] Z. Lan,et al. Molecular clustering physical model of steam condensation and the experimental study on the initial droplet size distribution , 2009 .
[12] Lei Jiang,et al. Designing Superhydrophobic Porous Nanostructures with Tunable Water Adhesion , 2009 .
[13] Jin Zhai,et al. Directional water collection on wetted spider silk , 2010, Nature.
[14] Lei Jiang,et al. Bioinspired Ribbed Nanoneedles with Robust Superhydrophobicity , 2010 .
[15] Yuejun Zhao,et al. Planar Jumping-Drop Thermal Diodes , 2011 .
[16] K. Muralidhar,et al. Dropwise Condensation Studies on Multiple Scales , 2012 .
[17] Lei Jiang,et al. A multi-structural and multi-functional integrated fog collection system in cactus , 2012, Nature Communications.
[18] J. Boreyko,et al. Vapor chambers with jumping-drop liquid return from superhydrophobic condensers , 2013 .
[19] E. Wang,et al. Condensation heat transfer on superhydrophobic surfaces , 2013 .
[20] E. Wang,et al. Modeling and Optimization of Superhydrophobic Condensation , 2013 .
[21] Evelyn N Wang,et al. Jumping-droplet-enhanced condensation on scalable superhydrophobic nanostructured surfaces. , 2012, Nano letters.
[22] K. Kim,et al. Dropwise Condensation on Micro- and Nanostructured Surfaces , 2014 .
[23] Jie Zhu,et al. Efficient Self-Propelling of Small-Scale Condensed Microdrops by Closely Packed ZnO Nanoneedles. , 2014, The journal of physical chemistry letters.
[24] Jie Zhu,et al. Energy-effective frost-free coatings based on superhydrophobic aligned nanocones. , 2014, ACS applied materials & interfaces.
[25] Tiezheng Qian,et al. Pancake bouncing on superhydrophobic surfaces , 2014, Nature Physics.
[26] Jie Zhu,et al. Fabrication of condensate microdrop self-propelling porous films of cerium oxide nanoparticles on copper surfaces. , 2015, Angewandte Chemie.
[27] Youmin Hou,et al. Recurrent filmwise and dropwise condensation on a beetle mimetic surface. , 2015, ACS nano.