In vitro degradation and cytocompatibility of a low temperature in-situ grown self-healing Mg-Al LDH coating on MAO-coated magnesium alloy AZ31
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Ling Gao | K. Zhi | R. Zeng | Dong-chu Chen | Xiaoman Fan | Chang-yang Li
[1] R. Huddleston. STRUCTURE , 2021, American Atrocity.
[2] S. Guan,et al. Enhancing biocompatibility and corrosion resistance of biodegradable Mg-Zn-Y-Nd alloy by preparing PDA/HA coating for potential application of cardiovascular biomaterials. , 2020, Materials science & engineering. C, Materials for biological applications.
[3] Z. Dong,et al. A novel coating system with self-reparable slippery surface and active corrosion inhibition for reliable protection of Mg alloy , 2019, Chemical Engineering Journal.
[4] Yufeng Zheng,et al. Electrochemical polymerization of dopamine with/without subsequent PLLA coating on Mg-Zn-Y-Nd alloy , 2019, Materials Letters.
[5] C. Shuai,et al. Biodegradation Behavior of Coated As-Extruded Mg–Sr Alloy in Simulated Body Fluid , 2019, Acta Metallurgica Sinica (English Letters).
[6] S. Guan,et al. Corrosion and Wear Resistance of Micro‐Arc Oxidation Composite Coatings on Magnesium Alloy AZ31—The Influence of Inclusions of Carbon Spheres , 2019, Advanced Engineering Materials.
[7] Ke Yang,et al. Improvement of biodegradable and antibacterial properties by solution treatment and micro-arc oxidation (MAO) of a magnesium alloy with a trace of copper , 2019, Corrosion Science.
[8] Ling Gao,et al. Corrosion resistance and antibacterial properties of hydroxyapatite coating induced by gentamicin-loaded polymeric multilayers on magnesium alloys. , 2019, Colloids and surfaces. B, Biointerfaces.
[9] Yanbing Zhao,et al. Corrosion resistance and drug release profile of gentamicin-loaded polyelectrolyte multilayers on magnesium alloys: Effects of heat treatment. , 2019, Journal of colloid and interface science.
[10] S. Guan,et al. Corrosion resistance of in-situ growth of nano-sized Mg(OH)2 on micro-arc oxidized magnesium alloy AZ31—Influence of EDTA , 2019, Journal of Materials Science & Technology.
[11] S. Guan,et al. Corrosion resistance of nanostructured magnesium hydroxide coating on magnesium alloy AZ31: influence of EDTA , 2019, Rare Metals.
[12] Wen-xian Wang,et al. Microstructure, mechanical, corrosion properties and cytotoxicity of beta‑calcium polyphosphate reinforced ZK61 magnesium alloy composite by spark plasma sintering. , 2019, Materials science & engineering. C, Materials for biological applications.
[13] S. Guan,et al. Corrosion resistance of Mg(OH)2/Mg–Al-layered double hydroxide coatings on magnesium alloy AZ31: influence of hydrolysis degree of silane , 2019, Rare Metals.
[14] Ping Liu,et al. Corrosion resistance of bioinspired DNA-induced Ca–P coating on biodegradable magnesium alloy , 2019, Journal of Magnesium and Alloys.
[15] Yufeng Zheng,et al. Fundamental Theory of Biodegradable Metals—Definition, Criteria, and Design , 2019, Advanced Functional Materials.
[16] E. Han,et al. Corrosion resistance of glucose-induced hydrothermal calcium phosphate coating on pure magnesium , 2019, Applied Surface Science.
[17] F. Fang,et al. Microstructure , 2019, CIRP Encyclopedia of Production Engineering.
[18] X. Cui,et al. Effect of alloy cations on corrosion resistance of LDH/MAO coating on magnesium alloy , 2019, Applied Surface Science.
[19] Y. F. Cheng,et al. Microbiologically influenced corrosion of X52 pipeline steel in thin layers of solution containing sulfate-reducing bacteria trapped under disbonded coating , 2018, Corrosion Science.
[20] S. Guan,et al. Surface modification of the biodegradable cardiovascular stent material Mg–Zn–Y–Nd alloy via conjugating REDV peptide for better endothelialization , 2018, Journal of Materials Research.
[21] E. Han,et al. Corrosion resistance of a ceria/polymethyltrimethoxysilane modified Mg-Al-layered double hydroxide on AZ31 magnesium alloy , 2018, Journal of Alloys and Compounds.
[22] Yanli Wang,et al. Preparation and performances of electrically conductive Nb-doped TiO2 coatings for 316 stainless steel bipolar plates of proton-exchange membrane fuel cells , 2018, Corrosion Science.
[23] Linhua Jiang,et al. Preparation of phytic acid conversion coating and corrosion protection performances for steel in chlorinated simulated concrete pore solution , 2018, Corrosion Science.
[24] B. Weng,et al. Sealing of anodized magnesium alloy AZ31 with MgAl layered double hydroxides layers , 2018, RSC advances.
[25] G. Song,et al. Multifunctional inhibition based on layered double hydroxides to comprehensively control corrosion of carbon steel in concrete , 2017 .
[26] Donghui Wang,et al. Sealing the Pores of PEO Coating with Mg-Al Layered Double Hydroxide: Enhanced Corrosion Resistance, Cytocompatibility and Drug Delivery Ability , 2017, Scientific Reports.
[27] W. Qin,et al. Multipurpose surface functionalization on AZ31 magnesium alloys by atomic layer deposition: tailoring the corrosion resistance and electrical performance. , 2017, Nanoscale.
[28] F. Pan,et al. A Novel Approach to Fabricate Protective Layered Double Hydroxide Films on the Surface of Anodized Mg‐Al Alloy , 2017 .
[29] Changqing Zhang,et al. MgAl layered double hydroxide/chitosan porous scaffolds loaded with PFTα to promote bone regeneration. , 2017, Nanoscale.
[30] E. Han,et al. Degradation mechanism of micro-arc oxidation coatings on biodegradable Mg-Ca alloys: The influence of porosity , 2017 .
[31] Donghui Wang,et al. Enhanced Corrosion Resistance and Biocompatibility of Magnesium Alloy by Mg-Al-Layered Double Hydroxide. , 2016, ACS applied materials & interfaces.
[32] J. Kubásek,et al. Structure, mechanical characteristics and in vitro degradation, cytotoxicity, genotoxicity and mutagenicity of novel biodegradable Zn-Mg alloys. , 2016, Materials science & engineering. C, Materials for biological applications.
[33] E. Han,et al. In Situ Growth Process of Mg-Al Hydrotalcite Conversion Film on AZ31 Mg Alloy , 2015 .
[34] Yufeng Zheng,et al. Recommendation for modifying current cytotoxicity testing standards for biodegradable magnesium-based materials. , 2015, Acta biomaterialia.
[35] E. Han,et al. Corrosion resistance of in-situ Mg−Al hydrotalcite conversion film on AZ31 magnesium alloy by one-step formation , 2015 .
[36] J. Singh,et al. Efficient anti-corrosive coating of cold-rolled steel in a seawater environment using an oil-based graphene oxide ink. , 2015, Nanoscale.
[37] E. Han,et al. Corrosion resistance of Mg-Al-LDH coating on magnesium alloy AZ31 , 2014 .
[38] E. Han,et al. Corrosion of molybdate intercalated hydrotalcite coating on AZ31 Mg alloy , 2014 .
[39] W. Ding,et al. Nanophasic biodegradation enhances the durability and biocompatibility of magnesium alloys for the next-generation vascular stents. , 2013, Nanoscale.
[40] Yong Wang,et al. Fabrication of mesoporous magnesium substituted β-tricalcium phosphate nanospheres by self-transformation and assembly involving EDTA ions , 2013 .
[41] T. Ishizaki,et al. Corrosion resistance of Mg–Al layered double hydroxide container-containing magnesium hydroxide films formed directly on magnesium alloy by chemical-free steam coating , 2013 .
[42] Juan-Yu Yang,et al. One-step fabrication of oriented Mg/Al-layered double hydroxide film on magnesium substrate with urea hydrolysis and its corrosion resistance , 2012 .
[43] Yingwei Song,et al. Study of the in situ growth mechanism of Mg–Al hydrotalcite conversion film on AZ31 magnesium alloy , 2012 .
[44] Fu-hui Wang,et al. Investigation on the inhibition behavior of a pentaerythritol glycoside for carbon steel in 3.5% NaCl saturated Ca(OH)2 solution , 2012 .
[45] E. Han,et al. In situ growth of Mg-Al hydrotalcite conversion film on AZ31 magnesium alloy , 2011 .
[46] W. Dietzel,et al. Corrosion of an extruded magnesium alloy ZK60 component—The role of microstructural features , 2011 .
[47] J. Uan,et al. Characterization of Mg,Al-hydrotalcite conversion film on Mg alloy and Cl− and CO32- anion-exchangeability of the film in a corrosive environment , 2007 .
[48] Hao Wang,et al. Self-assembly of hydroxyapatite nanostructures by microwave irradiation , 2004 .
[49] A. Vertegel,et al. A Study of Crystallization of Mg–Al Double Hydroxides , 2002 .