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24篇 您的检索式:作者名="Bormashenko E"
    题名 作者 年代 出处 被引量
1New investigations on ferrofluidics: Ferrofluidic marbles and magnetic-field-driven drops on superhydrophobic surfaces显示文摘BORMASHENKO E POGREB R BORMASHENKO Y 2008Langmuir2008,24,12:1
2Comment on water droplet motion control on superhydrophobic surfaces:exploiting the Wenzel-to-Cassie transition显示文摘Bormashenko E 2011Langmuir2011,27,12:1
3Self- assembled honeycomb polycarbonate films deposited on polymerpiezoelectric substrates and their applications显示文摘Bormashenko E Pogreb R Stanevsky O 2005Polym Adv Technol2005,16,:1
4Mesoscopic and submicroscopic patterning in thin polymer films: Impact of the solvent显示文摘Bormashenko E Pogreb R Stanevsky O 2005Mater Lett2005,59,:1
5Comment on Water Droplet Motion Control on Superhydrophobic Surfaces: Exploiting the Wenzel- to- Cassie Transition 显示文摘Bormashenko E 2011Langmuir2011,27,12:1
6How to make the cassie wetting state stable显示文摘Whyman G Bormashenko E 2011Langmuir2011,27,81:1
7Progress in understanding wetting transitions on rough surfaces 显示文摘BORMASHENKO E 2014Adv Colloid Interface Sci2014,10,31:1
8Wetting transitions and depinning of the triple line 显示文摘Bormashenko E Musin A Whyman G 2012Langmuir2012,28,7:1
9查看详情显示文摘Bormashenk E Pogreb R Stanevsky O Bormashenko Y Gendelman O 0,,28:1
10Development of novel binary and ternary conductive composites based on polyethylene,low-melting-point metal alloy and carbon black显示文摘BORMASHENKO E SUTOVSKI S POGREB R 2004Journal of Thermoplastic Composite Materials2004,17,3:1
11查看详情显示文摘Bormashenko E Pogreb R Whyman G Bormashenko Y Erlich M 0,,:1
12Vibration-induced Cassie-Wenzel wetting transition on rough surfaces显示文摘Bormashenko E Pogreb R Whyman G 0,,20:1
13Resonance Cassie-Wenzel wetting transition for horizontally vibration drops deposited on a rough surface显示文摘Bormashenko E Pogreb R Whyman G 0,,24:1
14Novel method of low-melting metal micropowders fabrication显示文摘Bormashenko E 2005J Mater Proc Techn2005,168,367:1
15Wetting properties of the multiscaled nanostructured polymer and metallic superhydrophobic surface 显示文摘Bormashenko E Stein T Whyman G 2006Langmuir2006,22,24:1
16Wetting properties of the multiscaled nanostructured polymer and metallic superhydrophobic suffaces显示文摘BORMASHENKO E STEIN T WHYMAN G 2006Langmuir2006,22,24:1
17Supe- rhydrophobicity of lotus leaves versus birds wings: different physical mechanisms leading to similar phenomena显示文摘BORMASHENKO E GENDELMAN O WHYMAN G 2012Lang- muir2012,28,14:1
18Development of novel binary and ternary conductive composites based on polyethylene, low-inching- point metal alloy and carbon black显示文摘Bormashenko E Sutovski S 2004Journal of Thermoplastic Composite Materials2004,17,3:1
19Wetting properties of the multiscaled nanostructured polymer and metal- lic superhydrophobic surfaces 显示文摘BORMASHENKO E STEIN T WHYMAN G 2006Langmuir2006,22,24:1
20Plasma treatment induced wetting transitions on biological tissue (pigeon feathers)显示文摘Bormashenko E Grynyov R 2012Colloids and Surfaces B:Biointerfaces2012,92,:1
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