典型文献
                Electrophoretic deposition of chitosan-bioglass?-hydroxyapatite-halloysite nanotube composite coating
            文献摘要:
                    The composite coatings of chitosan(CS)-bio-glass?(BG)-hydroxyapatite(HA)-halloysite nanotube(HNT)were investigated and produced via electrophoretic deposition(EPD)technique.The utilization of CS as a dispersing,blending and charging agent for ceramic par-ticles,including BG,HA and HNT,allowed the formation of CS-BG/HA/HNT composite,functionally graded com-posite(FGC)and bilayer film containing different layers.The results of scanning electron microscopy(SEM),energy-dispersive spectrometry(EDS),X-ray diffraction(XRD)and Fourier transform infrared spectroscopy(FTIR)illustrate the composite in the form of the optimum dis-tribution of ceramic components in the CS matrix with thickness of 28 μm on titanium(Ti)substrate.Electro-chemical impedance spectroscopy(EIS)and potentiody-namic polarization tests indicate that the corrosion resistance of the coated sample increases in corrected simulated body fluid(C-SBF)at 37℃.Finally,the apatite-inducing ability of CS-BG-HA-HNT is proved by the formation of carbonated hydroxyapatite particles on com-posite coating in C-SBF.
                文献关键词:
                    
                中图分类号:
                    作者姓名:
                    
                        Arman Molaei;MardAli Yousefpour
                    
                作者机构:
                    Department of Materials Engineering,Tehran Science and Research Branch,Islamic Azad University,Tehran 1477893855,Iran;Faculty of Materials Science and Metallurgical Engineering,Semnan University,Semnan 3513119111,Iran
                文献出处:
                    
                引用格式:
                    
                        [1]Arman Molaei;MardAli Yousefpour-.Electrophoretic deposition of chitosan-bioglass?-hydroxyapatite-halloysite nanotube composite coating)[J].稀有金属(英文版),2022(11):3850-3857
                    
                A类:
                Electrophoretic,bioglass,potentiody
                B类:
                    deposition,chitosan,hydroxyapatite,halloysite,nanotube,composite,coatings,CS,BG,HA,HNT,were,investigated,produced,via,electrophoretic,EPD,technique,utilization,dispersing,blending,charging,agent,ceramic,including,allowed,formation,functionally,graded,FGC,bilayer,film,containing,different,layers,results,scanning,electron,microscopy,energy,dispersive,spectrometry,EDS,ray,diffraction,Fourier,transform,infrared,spectroscopy,FTIR,illustrate,optimum,tribution,components,matrix,thickness,titanium,Ti,substrate,chemical,impedance,EIS,namic,polarization,tests,indicate,that,corrosion,resistance,coated,sample,increases,corrected,simulated,body,fluid,SBF,Finally,inducing,ability,proved,by,carbonated,particles
                AB值:
                    0.554567
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