Matches in SemOpenAlex for { <https://semopenalex.org/work/W2901674712> ?p ?o ?g. }
- W2901674712 endingPage "C972" @default.
- W2901674712 startingPage "C962" @default.
- W2901674712 abstract "Calcium phosphate (CaP) coatings have been widely studied as a biocompatible coating on biodegradable magnesium (Mg) alloys to improve the corrosion resistance and bioactivity for orthopedic application. However, the porous structure of CaP coatings formed in the aqueous solution cannot achieve the ideal long-time corrosion resistance. In this work, a titania (TiO2) coating was prepared on the hydroxyapatite (HA) coated Mg alloy by a sol-gel method. The in vitro degradation results of electrochemical measurements and immersion test show that the corrosion resistance of HA coated Mg alloy was further improved by the TiO2 sol-gel coatings. Furthermore, a systematic investigation of in vitro cytocompatibility and antibacterial properties of the samples was performed. The composite coating significantly enhanced cell adhesion and growth compared to the HA coating and uncoated Mg alloy. Meanwhile, the result of plate-counting method demonstrates that the antibacterial rate of the composite coating against E. coil and S.aureus reached 99.5 ± 0.3% and 99.8 ± 0.2%, respectively. These results suggest that the HA/TiO2 composite coatings effectively enhanced the corrosion resistance, in vitro cytocompatibility and antibacterial properties of Mg alloy and porous CaP-based coating, potentially widening the application of Mg alloys in the biomedical field." @default.
- W2901674712 created "2018-11-29" @default.
- W2901674712 creator A5015194250 @default.
- W2901674712 creator A5039695062 @default.
- W2901674712 creator A5044194001 @default.
- W2901674712 creator A5044777534 @default.
- W2901674712 creator A5045923205 @default.
- W2901674712 creator A5055707281 @default.
- W2901674712 creator A5058747937 @default.
- W2901674712 creator A5077171802 @default.
- W2901674712 date "2018-01-01" @default.
- W2901674712 modified "2023-10-15" @default.
- W2901674712 title "Hydroxyapatite/Titania Composite Coatings on Biodegradable Magnesium Alloy for Enhanced Corrosion Resistance, Cytocompatibility and Antibacterial Properties" @default.
- W2901674712 cites W1917535882 @default.
- W2901674712 cites W1969527835 @default.
- W2901674712 cites W1970979194 @default.
- W2901674712 cites W1981418508 @default.
- W2901674712 cites W1982181800 @default.
- W2901674712 cites W1982656121 @default.
- W2901674712 cites W1988947829 @default.
- W2901674712 cites W1991642422 @default.
- W2901674712 cites W1998839841 @default.
- W2901674712 cites W2003218457 @default.
- W2901674712 cites W2005733471 @default.
- W2901674712 cites W2006921045 @default.
- W2901674712 cites W2007676674 @default.
- W2901674712 cites W2022045568 @default.
- W2901674712 cites W2026596232 @default.
- W2901674712 cites W2029766985 @default.
- W2901674712 cites W2039407261 @default.
- W2901674712 cites W2040235837 @default.
- W2901674712 cites W2048170759 @default.
- W2901674712 cites W2050575070 @default.
- W2901674712 cites W2059043723 @default.
- W2901674712 cites W2060157042 @default.
- W2901674712 cites W2063260770 @default.
- W2901674712 cites W2065213455 @default.
- W2901674712 cites W2070702144 @default.
- W2901674712 cites W2071538975 @default.
- W2901674712 cites W2073094591 @default.
- W2901674712 cites W2075440119 @default.
- W2901674712 cites W2077035125 @default.
- W2901674712 cites W2080417721 @default.
- W2901674712 cites W2080441385 @default.
- W2901674712 cites W2082570948 @default.
- W2901674712 cites W2082757671 @default.
- W2901674712 cites W2087563925 @default.
- W2901674712 cites W2087881385 @default.
- W2901674712 cites W2089051338 @default.
- W2901674712 cites W2092559181 @default.
- W2901674712 cites W2094343416 @default.
- W2901674712 cites W2094893662 @default.
- W2901674712 cites W2126268535 @default.
- W2901674712 cites W2136959280 @default.
- W2901674712 cites W2166038708 @default.
- W2901674712 cites W2174802179 @default.
- W2901674712 cites W2187473108 @default.
- W2901674712 cites W2195923797 @default.
- W2901674712 cites W2265531934 @default.
- W2901674712 cites W2316242415 @default.
- W2901674712 cites W2320998912 @default.
- W2901674712 cites W2326633488 @default.
- W2901674712 cites W2332268599 @default.
- W2901674712 cites W2405035371 @default.
- W2901674712 cites W2471673710 @default.
- W2901674712 cites W2513710234 @default.
- W2901674712 cites W2530333719 @default.
- W2901674712 cites W2537418168 @default.
- W2901674712 cites W2582689893 @default.
- W2901674712 cites W2596499121 @default.
- W2901674712 cites W2615990324 @default.
- W2901674712 cites W2626833491 @default.
- W2901674712 cites W2740563852 @default.
- W2901674712 cites W2751789462 @default.
- W2901674712 cites W2789423501 @default.
- W2901674712 cites W2790847108 @default.
- W2901674712 cites W2794544298 @default.
- W2901674712 cites W2805980364 @default.
- W2901674712 cites W2888057232 @default.
- W2901674712 cites W4211147970 @default.
- W2901674712 doi "https://doi.org/10.1149/2.1171814jes" @default.
- W2901674712 hasPublicationYear "2018" @default.
- W2901674712 type Work @default.
- W2901674712 sameAs 2901674712 @default.
- W2901674712 citedByCount "37" @default.
- W2901674712 countsByYear W29016747122019 @default.
- W2901674712 countsByYear W29016747122020 @default.
- W2901674712 countsByYear W29016747122021 @default.
- W2901674712 countsByYear W29016747122022 @default.
- W2901674712 countsByYear W29016747122023 @default.
- W2901674712 crossrefType "journal-article" @default.
- W2901674712 hasAuthorship W2901674712A5015194250 @default.
- W2901674712 hasAuthorship W2901674712A5039695062 @default.
- W2901674712 hasAuthorship W2901674712A5044194001 @default.
- W2901674712 hasAuthorship W2901674712A5044777534 @default.
- W2901674712 hasAuthorship W2901674712A5045923205 @default.
- W2901674712 hasAuthorship W2901674712A5055707281 @default.
- W2901674712 hasAuthorship W2901674712A5058747937 @default.