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Volumn 384, Issue 1, 2012, Pages 182-188
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Wear-resistant rose petal-effect surfaces with superhydrophobicity and high droplet adhesion using hydrophobic and hydrophilic nanoparticles
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Author keywords
Adhesion; Hierarchical structure; Rose petal; Superhydrophobicity; Wear resistance
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Indexed keywords
AFM;
ATOMIC FORCE MICROSCOPE (AFM);
HIERARCHICAL STRUCTURES;
HYDROPHOBIC AND HYDROPHILIC;
MICROPATTERNED SUBSTRATES;
OCTADECYLPHOSPHONIC ACIDS;
PITCH VALUES;
ROSE PETAL;
SUPERHYDROPHOBICITY;
WEAR-RESISTANT;
ZNO NANOPARTICLES;
ADHESION;
ATOMIC FORCE MICROSCOPY;
DROPS;
INDUSTRIAL APPLICATIONS;
METAL NANOPARTICLES;
MICROSTRUCTURE;
NANOSTRUCTURES;
WEAR RESISTANCE;
HYDROPHOBICITY;
NANOMATERIAL;
NANOPARTICLE;
OCTADECYLPHOSPHONIC ACID;
PHOSPHONIC ACID DERIVATIVE;
UNCLASSIFIED DRUG;
ZINC OXIDE;
ADHESION;
ARTICLE;
DENSITY;
HYDROPHILICITY;
HYDROPHOBICITY;
PRIORITY JOURNAL;
ROSE PETAL EFFECT;
SURFACE PROPERTY;
WETTABILITY;
EPOXY COMPOUNDS;
HYDROPHOBIC AND HYDROPHILIC INTERACTIONS;
MICROSCOPY, ATOMIC FORCE;
MICROSCOPY, ELECTRON, SCANNING;
NANOPARTICLES;
PHOSPHOROUS ACIDS;
SURFACE PROPERTIES;
THERMODYNAMICS;
WATER;
ZINC OXIDE;
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EID: 84864828832
PISSN: 00219797
EISSN: 10957103
Source Type: Journal
DOI: 10.1016/j.jcis.2012.06.070 Document Type: Article |
Times cited : (108)
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References (20)
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