Superhydrophobic surfaces are conventionally prepared employing two steps: roughening a surface and lowering their surface energy. In the present work, a direct\ud voltage (DC) is applied between two copper plates immersed in a dilute ethanolic stearic acid solution. The surface of the anodic copper electrode transforms to\ud superhydrophobic due to a reaction between copper and stearic acid solution. The fabrication process of superhydrophobic copper surfaces is simplified in just one-step. The surface of the anodic copper is found to be covered with flower-like low surface energy copper stearate films providing the water contact angle of 153 ± 2° with the rolloff properties
Superhydrophobic copper surfaces have been prepared by a one-step electrochemical modification proce...
The present research work is focused on to fabricate and examine the characteristics of a superhydr...
The Cu surface with a dual-scale roughness has been prepared via a facile solution-phase etching rou...
Superhydrophobic surfaces are conventionally prepared employing two steps: roughening a surface and ...
Superhydrophobic surfaces are conventionally prepared employing two steps: roughening a surface and ...
Superhydrophobic aluminum surfaces have been prepared by means of electrodeposition of copper on alu...
Superhydrophobic aluminum surfaces have been prepared by means of electrodeposition of copper on alu...
A hierarchical copper structure combining micro- and nanogaps/pores was built up on copper substrate...
A hierarchical copper structure combining micro- and nanogaps/pores was built up on copper substrate...
Superhydrophobic aluminum surfaces have been prepared by means of electrodeposition of copper on alu...
Superhydrophobic copper surfaces have been prepared by a one-step electrochemical modification proce...
Superhydrophobic films were coated on an aluminum alloy surface via a one-step electrochemical modif...
Superhydrophobic films were coated on an aluminum alloy surface via a one-step electrochemical modif...
Superhydrophobic films were coated on an aluminum alloy surface via a one-step electrochemical modif...
Superhydrophobic copper surfaces have been prepared by a one-step electrochemical modification proce...
Superhydrophobic copper surfaces have been prepared by a one-step electrochemical modification proce...
The present research work is focused on to fabricate and examine the characteristics of a superhydr...
The Cu surface with a dual-scale roughness has been prepared via a facile solution-phase etching rou...
Superhydrophobic surfaces are conventionally prepared employing two steps: roughening a surface and ...
Superhydrophobic surfaces are conventionally prepared employing two steps: roughening a surface and ...
Superhydrophobic aluminum surfaces have been prepared by means of electrodeposition of copper on alu...
Superhydrophobic aluminum surfaces have been prepared by means of electrodeposition of copper on alu...
A hierarchical copper structure combining micro- and nanogaps/pores was built up on copper substrate...
A hierarchical copper structure combining micro- and nanogaps/pores was built up on copper substrate...
Superhydrophobic aluminum surfaces have been prepared by means of electrodeposition of copper on alu...
Superhydrophobic copper surfaces have been prepared by a one-step electrochemical modification proce...
Superhydrophobic films were coated on an aluminum alloy surface via a one-step electrochemical modif...
Superhydrophobic films were coated on an aluminum alloy surface via a one-step electrochemical modif...
Superhydrophobic films were coated on an aluminum alloy surface via a one-step electrochemical modif...
Superhydrophobic copper surfaces have been prepared by a one-step electrochemical modification proce...
Superhydrophobic copper surfaces have been prepared by a one-step electrochemical modification proce...
The present research work is focused on to fabricate and examine the characteristics of a superhydr...
The Cu surface with a dual-scale roughness has been prepared via a facile solution-phase etching rou...