Preparing of superamphiphobic surface by fabricating hierarchical nano re-entrant pyramids on micro-cones using a combined laser-electrochemistry method
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Zhaoyang Zhang | Kun Xu | Hao Zhu | Yucheng Wu | Jian Gao | Tao Wang | Mengnan Hu
[1] T. Huynh,et al. Fabrication of superhydrophobic surface using one-step chemical treatment , 2020, Surfaces and Interfaces.
[2] Ganchimeg Lkhamsuren,et al. Superhydrophobic modification and characterization of cashmere fiber surfaces by wet coating techniques of silica nanoparticles , 2020, Surfaces and Interfaces.
[3] E. Ahmadi,et al. Review of superoleophobic surfaces: Evaluation, fabrication methods, and industrial applications , 2019 .
[4] M. Zhong,et al. 3D re-entrant nanograss on microcones for durable superamphiphobic surfaces via laser-chemical hybrid method , 2018, Applied Surface Science.
[5] Guofan Jin,et al. General Strategy toward Dual-Scale-Controlled Metallic Micro-Nano Hybrid Structures with Ultralow Reflectance. , 2017, ACS nano.
[6] E. B. Gorokhov,et al. Local anodic oxidation of solid GeO films: The nanopatterning possibilities , 2017 .
[7] S. Khorsand,et al. Corrosion resistance and long-term durability of super-hydrophobic nickel film prepared by electrodeposition process , 2014 .
[8] K. Sugioka,et al. Ultrafast lasers—reliable tools for advanced materials processing , 2014, Light: Science & Applications.
[9] Jinlong Song,et al. Fabrication of superoleophobic surfaces on Al substrates , 2013 .
[10] Hyuneui Lim,et al. Simple fabrication approach for superhydrophobic and superoleophobic Al surface , 2013 .
[11] Hyuneui Lim,et al. Improved antireflection properties of moth eye mimicking nanopillars on transparent glass: flat antireflection and color tuning. , 2012, Nanoscale.
[12] Jinlong Song,et al. Electrochemical machining of super-hydrophobic Al surfaces and effect of processing parameters on wettability , 2012 .
[13] Kyu Hwan Oh,et al. Bioinspired steel surfaces with extreme wettability contrast. , 2012, Nanoscale.
[14] Q. Xue,et al. Rapid and reversible switching between superoleophobicity and superoleophilicity in response to counterion exchange. , 2012, Journal of colloid and interface science.
[15] A Tserepi,et al. From superamphiphobic to amphiphilic polymeric surfaces with ordered hierarchical roughness fabricated with colloidal lithography and plasma nanotexturing. , 2011, Langmuir : the ACS journal of surfaces and colloids.
[16] Gareth H. McKinley,et al. Designing Superoleophobic Surfaces , 2007, Science.
[17] David Reinhoudt,et al. What do we need for a superhydrophobic surface? A review on the recent progress in the preparation of superhydrophobic surfaces. , 2007, Chemical Society reviews.
[18] Mihee M. Kim,et al. A simple fabrication route to a highly transparent super-hydrophobic surface with a poly(dimethylsiloxane) coated flexible mold. , 2007, Chemical communications.
[19] S. Amoruso,et al. Characterization of laser ablation of solid targets with near-infrared laser pulses of 100 fs and 1 ps duration , 2006 .
[20] Jan Genzer,et al. Recent developments in superhydrophobic surfaces and their relevance to marine fouling: a review , 2006, Biofouling.
[21] Yoshiaki Kanamori,et al. Antireflection sub-wavelength gratings fabricated by spin-coating replication , 2005 .