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Photothermal self-healing polyurethane coating based on hollow nanofillers in seawater
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作者 KANG Qian-qian MAO Zhi-peng +3 位作者 PENG Li-ming MYRONYUK Oleksiy LI Wei-hua WANG Wei 《Journal of Central South University》 SCIE EI CAS CSCD 2024年第10期3447-3462,共16页
Herein,a novel composite coating with excellent self-healing and corrosion resistance activated byphotothermal responsive hollow core-shell nanofillers was developed.A photothermal nanofiller(Co_(9)S_(8)@Bi_(2)S_(3))w... Herein,a novel composite coating with excellent self-healing and corrosion resistance activated byphotothermal responsive hollow core-shell nanofillers was developed.A photothermal nanofiller(Co_(9)S_(8)@Bi_(2)S_(3))with ahollow core-shell structure was synthesized and then added to polyurethane(PU)to prepare PU-Co_(9)S_(8)@Bi_(2)S_(3)compositecoating.Applying 808 nm near-infrared irradiation induces a photothermal effect in Co_(9)S_(8)@Bi_(2)S_(3),which subsequentlyinitiates the reconstruction of reversible hydrogen bonds,facilitating the self-healing of coating scratches.The excellentphotothermal self-healing performance of PU-Co_(9)S_(8)@Bi_(2)S_(3)coating was demonstrated by scratch tests and moleculardynamics simulations.The electrochemical impedance spectroscopy test results showed that the PU-Co_(9)S_(8)@Bi_(2)S_(3)coating has good self-healing and anti-corrosion properties.The low-frequency impedance modulus of the coating afterthree self-healing sessions was still close to 109Ω·cm^(2)after 30 d of immersion in seawater.This study provides a newstrategy for developing multi-cycle self-healing coatings triggered by photothermal effects. 展开更多
关键词 polyurethane coating photothermal effect SELF-HEALING corrosion protection
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Alumina nanoparticles-reinforced graphene-containing waterborne polyurethane coating for enhancing corrosion and wear resistance 被引量:5
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作者 Xueting Chang Xiaoqiu Chen +4 位作者 Qingyun Zhang Yanhua Lei Dongsheng Wang Jinyang Li Shibin Sun 《Corrosion Communications》 2021年第4期1-11,共11页
In this paper,aluminum oxide(Al_(2)O_(3))nanoparticles-reinforced graphene(G)-containing waterborne polyurethane(WPU)coatings were prepared on the EH40 steel substrate.Wear and corrosion resistance of the Al_(2)O_(3)/... In this paper,aluminum oxide(Al_(2)O_(3))nanoparticles-reinforced graphene(G)-containing waterborne polyurethane(WPU)coatings were prepared on the EH40 steel substrate.Wear and corrosion resistance of the Al_(2)O_(3)/G/WPU coatings with different Al_(2)O_(3)contents were investigated by wear test,electrochemical impedance spectroscopy,and salt spray test.Results showed that the Al_(2)O_(3)/G/WPU coatings exhibited highly enhanced wear and corrosion resistance in comparison with the G/WPU coatings.The Al_(2)O_(3)/G/WPU coating with 3 wt.%Al_(2)O_(3)was found to exhibit the best performance in terms of friction coefficient,wear volume,corrosion current,and impedance.The Al_(2)O_(3)/G/WPU coatings with promising wear and corrosion resistance may find widespread potential applications in polar icebreaking ship steels. 展开更多
关键词 Waterborne polyurethane coating Alumina nanoparticles Graphene Corrosion resistance Wear resistance
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Adhesion Improvement of Zirconium Coating on Polyurethane Modified by Plasmas
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作者 高毅 郝晓飞 刘际伟 《Plasma Science and Technology》 SCIE EI CAS CSCD 2016年第2期157-161,共5页
In order to improve the adhesion of the middle frequency magnetic sputtered zirconium coating on a polyurethane film,an anode layer source was used to pretreat the polyurethane film with nitrogen and oxygen ions.SEMs ... In order to improve the adhesion of the middle frequency magnetic sputtered zirconium coating on a polyurethane film,an anode layer source was used to pretreat the polyurethane film with nitrogen and oxygen ions.SEMs and AFM roughness profiles of treated samples and the contrast groups were obtained.Besides,XPS survey spectrums and high resolution spectrums were also investigated.The adhesion test revealed that ion bombardment could improve the adhesion to the polyurethane coating substrate.A better etching result of oxygen ions versus nitrogen predicts a higher bonding strength of zirconium coating on polyurethane and,indeed,the highest bonding strengths are for oxygen ion bombardment upto 13.3 MPa.As demonstrated in X-ray photoelectron spectroscopy,the oxygen ion also helps to introduce more active groups,and,therefore,it achieves a high value of adhesion strength. 展开更多
关键词 anode layer source polyurethane(PU) zirconium coating adhesion functional groups
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Microencapsulation of UV-Curable Self-healing Agent for Smart Anticorrosive Coating 被引量:1
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作者 赵东 汪谟贞 +2 位作者 吴启超 周晓 葛学武 《Chinese Journal of Chemical Physics》 SCIE CAS CSCD 2014年第5期607-615,I0004,共10页
UV-curable polyurethane prepolymer and photoinitiator 1173 were facilely encapsulated in a poly(urea-formaldehyde) shell, which was in situ formed by the polymerization of formalde-hyde and urea in an oil-in-water e... UV-curable polyurethane prepolymer and photoinitiator 1173 were facilely encapsulated in a poly(urea-formaldehyde) shell, which was in situ formed by the polymerization of formalde-hyde and urea in an oil-in-water emulsion. The diameters of the microcapsules ranged from 118 μm to 663 μm depending on agitation speed, and were obtained via optical mi-croscopy and scanning electron microscopy analyses. The encapsulation percent and the yield of microcapsules prepared at the agitation speed of 600 r/min can reach 97.52wt% and 65.23wt%, respectively. When the water-borne polyurethane (WPU) coating embedded with the prepared microcapsules were scratched, the healing agent could be released from rup-tured microcapsules and lled the scribed region. The excellent anticorrosion properties of the WPU coating embedded with the prepared microcapsules were con rmed by the results obtained from both electrochemical impedance spectroscopy and Tafel curves. 展开更多
关键词 SELF-HEALING Water-borne polyurethane coating Corrosion resistance Poly(urea-formaldehyde) microcapsule UV-curable coating
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A facile method to fabricate surfaces showing superhydrophilicity in air and superhydrophobicity in oil 被引量:3
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作者 YE XiangDong GUO YuXuan +5 位作者 JIA YanChao YE Xin WANG Shuai CAI AnJiang WU XiaoJun SHAO JinYou 《Science China(Technological Sciences)》 SCIE EI CAS CSCD 2017年第11期1724-1731,共8页
The changes of the wettability of the solid surfaces have attracted massive attention due to their important practical implications in numerous fields. As a new subject, the research on the wettability under the diffe... The changes of the wettability of the solid surfaces have attracted massive attention due to their important practical implications in numerous fields. As a new subject, the research on the wettability under the different environments is still in its early stage. So the fundamental research must be performed for the practical applications under different environments. However, it is seldom that the comprehensive wettability of a surface in air, in water and in oil has been reported. In this paper, the authors investigated the wettability of the stainless steel mesh coated with polyurethane in the above three different environments. The surface of the uncoated mesh was found to be hydrophobic in air, but the surface of the coated mesh was superhydrophilic in air. More interestingly, the surfaces of the coated meshes were superoleophilic in water and superhydrophobic in oil. Due to the coated meshes with these wettabilities were fabricated via a facile two-step method, the presented method may be adopted for large-scale industrial production, in various fields, such as icing prevention or the oil-field industry. 展开更多
关键词 WETTABILITY polyurethane coated mesh SUPERHYDROPHILICITY SUPERHYDROPHOBICITY superoleophilicity
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