Ultrasonic assisted rapid preparation of superhydrophobic stainless steel surface and its application in oil/water separation
暂无分享,去创建一个
Dawei Li | Yu Zhang | Kai Wang | Yunlong Rao | Chunling Xu | Wengang Liu | Zongbo Zhang | Xin Jiang | Xintong Chen | Changbin Xu | Chen Jiang
[1] A. Gani,et al. Resistant starch type 2 from lotus stem: Ultrasonic effect on physical and nutraceutical properties , 2021, Ultrasonics sonochemistry.
[2] M. Elangovan,et al. Structural, optical, biological and photocatalytic activities of platinum nanoparticles using salixtetrasperma leaf extract via hydrothermal and ultrasonic methods , 2021 .
[3] Z. Haider,et al. One-step electrochemical deposition leading to superhydrophobic matrix for inhibiting abiotic and microbiologically influenced corrosion of Cu in seawater environment , 2021 .
[4] A. Ancona,et al. Laser Fabrication of Anti-Icing Surfaces: A Review , 2020, Materials.
[5] Ning Wang,et al. Fabrication of hierarchical structures on steel mesh with good superhydrophobicity and anti-corrosion property , 2020 .
[6] R. Ganeev,et al. Expedited Transition in the Wettability Response of Metal Meshes Structured by Femtosecond Laser Pulses for Oil-Water Separation , 2020, Frontiers in Chemistry.
[7] L. Ren,et al. Biomimetic superhydrophobic and antibacterial stainless-steel mesh via double-potentiostatic electrodeposition and modification , 2020, Surface and Coatings Technology.
[8] K. Jeyasubramanian,et al. Super-hydrophobicity: Mechanism, fabrication and its application in medical implants to prevent biomaterial associated infections , 2020 .
[9] Qiaoxin Zhang,et al. Research on a reversible superwetting behavior and its corrosion resistance , 2020 .
[10] M. Karaman,et al. Roll-to roll initiated chemical vapor deposition of super hydrophobic thin films on large-scale flexible substrates , 2020 .
[11] Ning Li,et al. Self-assembly of super-hydrophobic PMMA microspheres on silicon wafer as MALDI-MS chip for rapid quantification of peptides , 2020 .
[12] Chunlin Xu,et al. Preparation of intricate nanostructures on 304 stainless steel surface by SiO2-assisted HF etching for high superhydrophobicity , 2020 .
[13] L. Yeo,et al. High Frequency Sonoprocessing: A New Field of Cavitation‐Free Acoustic Materials Synthesis, Processing, and Manipulation , 2020, Advanced science.
[14] Yingqing Zhan,et al. Robust super-hydrophobic/super-oleophilic sandwich-like UIO-66-F4@rGO composites for efficient and multitasking oil/water separation applications. , 2019, Journal of hazardous materials.
[15] Dachuan Liu,et al. Superhydrophobic nickel coatings fabricated by scanning electrodeposition on stainless steel formed by selective laser melting , 2019, Surface and Coatings Technology.
[16] A. Huang,et al. Stainless-steel-net-supported superhydrophobic COF coating for oil/water separation , 2019, Journal of Membrane Science.
[17] Luhong Zhang,et al. Ni-Al layered double hydroxides (LDHs) coated superhydrophobic mesh with flower-like hierarchical structure for oil/water separation , 2019, Applied Surface Science.
[18] A. M. Goitandia,et al. The Synthesis of a Superhydrophobic and Thermal Stable Silica Coating via Sol-Gel Process , 2019, Coatings.
[19] J. Duan,et al. Substrate-independent, switchable bubble wettability surfaces induced by ultrasonic treatment. , 2019, Soft matter.
[20] D. V. Genne,et al. Specific Features of the Realization of Ultrasonic Action in Liquid Media under Excessive Pressure , 2019, 2019 20th International Conference of Young Specialists on Micro/Nanotechnologies and Electron Devices (EDM).
[21] Dong Chen,et al. Preparation and Corrosion Resistance of 304 Super-hydrophobic Stainless-Steel Surface , 2019, IOP Conference Series: Materials Science and Engineering.
[22] Dawei Li,et al. Mechanism of ultrasonic impregnation on porosity of activated carbons in non-cavitation and cavitation regimes. , 2019, Ultrasonics sonochemistry.
[23] B. Bhushan,et al. Facile approach to develop durable and reusable superhydrophobic/superoleophilic coatings for steel mesh surfaces. , 2019, Journal of colloid and interface science.
[24] Mengying Long,et al. An alternative fabrication of underoil superhydrophobic or underwater superoleophobic stainless steel meshes for oil-water separation: Originating from one-step vapor deposition of polydimethylsiloxane , 2018, Separation and Purification Technology.
[25] Jiang Cheng,et al. Fabrication of superhydrophobic copper stearate@Fe3O4 coating on stainless steel meshes by dip-coating for oil/water separation , 2018, Surface and Coatings Technology.
[26] Z. Bing,et al. The anti-icing/frosting aluminum surface with hydrangea-like micro/nano structure prepared by chemical etching , 2018, Materials Letters.
[27] D. Mcilroy,et al. Boron substituted MFI-type zeolite-coated mesh for oil-water separation , 2018, Colloids and Surfaces A: Physicochemical and Engineering Aspects.
[28] M. Zhong,et al. Durable and robust transparent superhydrophobic glass surfaces fabricated by a femtosecond laser with exceptional water repellency and thermostability , 2018 .
[29] S. S. Kim,et al. Facile fabrication of superhydrophobic surfaces from austenitic stainless steel (AISI 304) by chemical etching , 2018 .
[30] W. Qi,et al. Underwater superoleophobic/underoil superhydrophobic corn cob coated meshes for on-demand oil/water separation , 2018 .
[31] D. Jiang,et al. Fabrication of superhydrophobic nano-aluminum films on stainless steel meshes by electrophoretic deposition for oil-water separation , 2018 .
[32] Jing Wang,et al. One-step Hydrothermal Process to Fabricate Superhydrophobic Surface on Magnesium Alloy with Enhanced Corrosion Resistance and Self-cleaning Performance , 2017 .
[33] Y. Asakura,et al. Dependence of cavitation, chemical effect, and mechanical effect thresholds on ultrasonic frequency. , 2017, Ultrasonics sonochemistry.
[34] Yan-Jun Liu,et al. Facile preparation of robust and superhydrophobic materials for self-cleaning and oil/water separation , 2017 .
[35] Peng Liu,et al. Superhydrophobic and self-cleaning behavior of Portland cement with lotus-leaf-like microstructure , 2017 .
[36] Christopher L. Brown,et al. Insect Analogue to the Lotus Leaf: A Planthopper Wing Membrane Incorporating a Low-Adhesion, Nonwetting, Superhydrophobic, Bactericidal, and Biocompatible Surface. , 2017, ACS applied materials & interfaces.
[37] Yuan-Xiang Fu,et al. The Janus effect on superhydrophilic Cu mesh decorated with Ni-NiO/Ni(OH) 2 core-shell nanoparticles for oil/water separation , 2017 .
[38] M. Nowicki,et al. Fabrication of superhydrophobic cotton fabrics by a simple chemical modification , 2016, Cellulose.
[39] Huan Xu,et al. Cavitation dose in an ultrasonic cleaner and its dependence on experimental parameters , 2016 .
[40] L. Ren,et al. Facile fabrication of biomimetic superhydrophobic surface with anti-frosting on stainless steel substrate , 2015 .
[41] Zheng Guo,et al. Fabrication of superhydrophobic surface with improved corrosion inhibition on 6061 aluminum alloy substrate , 2015 .
[42] T. Darmanin,et al. Superhydrophobic and superoleophobic properties in nature , 2015 .
[43] Ahmad B. Albadarin,et al. Properties of super-hydrophobic copper and stainless steel meshes: Applications in controllable water permeation and organic solvents/water separation , 2015 .
[44] P. Choi,et al. Acoustic power dependences of sonoluminescence and bubble dynamics. , 2014, Ultrasonics sonochemistry.
[45] Quandai Wang,et al. Fabrication of template with dual-scale structures based on glass wet etching and its application in hydrophobic surface preparation , 2014 .
[46] X. Liu,et al. Fabrication of Super-Hydrophobic Surface on Stainless Steel Using Chemical Etching Method , 2013 .
[47] Ke Yang,et al. Research on super-hydrophobic surface of biodegradable magnesium alloys used for vascular stents. , 2013, Materials science & engineering. C, Materials for biological applications.
[48] Lei Jiang,et al. Bio-inspired superoleophobic and smart materials: Design, fabrication, and application , 2013 .
[49] U. Erb,et al. A low-cost method to produce superhydrophobic polymer surfaces , 2012, Journal of Materials Science.
[50] Li-Jen Chen,et al. Fabrication of sticky and slippery superhydrophobic surfaces via spin-coating silica nanoparticles onto flat/patterned substrates , 2011, Nanotechnology.
[51] Mark T. Tuominen,et al. Hierarchical Superhydrophobic Surfaces Fabricated by Dual‐Scale Electron‐Beam‐Lithography with Well‐Ordered Secondary Nanostructures , 2011 .
[52] Gang Li,et al. Superhydrophobic surfaces fabricated by microstructuring of stainless steel using a femtosecond laser , 2009 .
[53] B. Ding,et al. Fabrication of a super-hydrophobic nanofibrous zinc oxide film surface by electrospinning , 2008 .
[54] Shuyu Lin,et al. Study of low-frequency ultrasonic cavitation fields based on spectral analysis technique. , 2006, Ultrasonics.
[55] G. V. Leonov,et al. Increasing of ultrasonic technologies efficiency and development of ultrasonic devices for industry, medicine and agriculture , 2004, 2004 International Siberian Workshop on Electron Devices and Materials.