Matches in SemOpenAlex for { <https://semopenalex.org/work/W3215694955> ?p ?o ?g. }
- W3215694955 endingPage "57" @default.
- W3215694955 startingPage "49" @default.
- W3215694955 abstract "We designed pyrochlore-type potassium niobate (KN) and potassium tantalate (KT) by introducing silver ions to improve their antibacterial efficiency. KN and KT samples were used as ion-exchangeable parent compounds, and molten AgNO3 was used for the ion-exchange reaction. The formation of silver ion-exchanged compounds with various molar ratios, which was investigated by X-ray diffraction (XRD), indicated a clear structural transformation of KN after complete ion-exchange. The antibacterial efficacy of these samples was investigated using the colony count method, and the relative antibacterial activity was compared based on the area of the inhibition zone. The results indicated that silver ion-exchanged samples with molar ratios of Ag/Nb = 0.05, 0.44, 0.67, and Ag/Ta = 0.07, 0.44 0.64 exhibited complete (100%) antibacterial activity against Staphylococcus aureus (gram-positive) and Escherichia coli (gram-negative). Among the silver ion-exchanged samples, KAN1 and KAT1 exhibited the highest antibacterial activities because of the controlled release of Ag+ ions through their tunnel structure. In this study, it was found that tunable silver-release properties of pyrochlore-type niobate and tantalate enable the optimization of discharged Ag+ ions, which inhibits the bacterial efficacy in different extents, thus suggesting their use in various biomedical applications." @default.
- W3215694955 created "2021-12-06" @default.
- W3215694955 creator A5014275401 @default.
- W3215694955 creator A5023647884 @default.
- W3215694955 creator A5035116488 @default.
- W3215694955 creator A5040178914 @default.
- W3215694955 creator A5072598909 @default.
- W3215694955 creator A5085182122 @default.
- W3215694955 date "2021-11-27" @default.
- W3215694955 modified "2023-09-26" @default.
- W3215694955 title "Controllable antimicrobial properties of silver ion-exchanged niobate and tantalate compounds" @default.
- W3215694955 cites W1965664692 @default.
- W3215694955 cites W1981474525 @default.
- W3215694955 cites W1990575400 @default.
- W3215694955 cites W1990681348 @default.
- W3215694955 cites W1995823206 @default.
- W3215694955 cites W2007642505 @default.
- W3215694955 cites W2022354295 @default.
- W3215694955 cites W2034999584 @default.
- W3215694955 cites W2039429978 @default.
- W3215694955 cites W2042133224 @default.
- W3215694955 cites W2054352266 @default.
- W3215694955 cites W2092360748 @default.
- W3215694955 cites W2093452140 @default.
- W3215694955 cites W2106596027 @default.
- W3215694955 cites W2126508214 @default.
- W3215694955 cites W2146482929 @default.
- W3215694955 cites W2151167710 @default.
- W3215694955 cites W2167077438 @default.
- W3215694955 cites W2313255807 @default.
- W3215694955 cites W2323970038 @default.
- W3215694955 cites W2324018042 @default.
- W3215694955 cites W2340774841 @default.
- W3215694955 cites W2410538093 @default.
- W3215694955 cites W2411435579 @default.
- W3215694955 cites W2474577504 @default.
- W3215694955 cites W2550890098 @default.
- W3215694955 cites W2612878241 @default.
- W3215694955 cites W2744758960 @default.
- W3215694955 cites W2756911003 @default.
- W3215694955 cites W2761217088 @default.
- W3215694955 cites W2766020960 @default.
- W3215694955 cites W2769244803 @default.
- W3215694955 cites W2791044421 @default.
- W3215694955 cites W2806260871 @default.
- W3215694955 cites W2888420103 @default.
- W3215694955 cites W2893781213 @default.
- W3215694955 cites W2903115614 @default.
- W3215694955 cites W2920853490 @default.
- W3215694955 cites W2936188863 @default.
- W3215694955 cites W2970500607 @default.
- W3215694955 cites W2979554585 @default.
- W3215694955 cites W2980793922 @default.
- W3215694955 cites W2997313406 @default.
- W3215694955 cites W3005036417 @default.
- W3215694955 cites W3016463754 @default.
- W3215694955 cites W3046077340 @default.
- W3215694955 cites W3110490758 @default.
- W3215694955 cites W3129053190 @default.
- W3215694955 doi "https://doi.org/10.1080/21870764.2021.2006877" @default.
- W3215694955 hasPublicationYear "2021" @default.
- W3215694955 type Work @default.
- W3215694955 sameAs 3215694955 @default.
- W3215694955 citedByCount "2" @default.
- W3215694955 countsByYear W32156949552022 @default.
- W3215694955 countsByYear W32156949552023 @default.
- W3215694955 crossrefType "journal-article" @default.
- W3215694955 hasAuthorship W3215694955A5014275401 @default.
- W3215694955 hasAuthorship W3215694955A5023647884 @default.
- W3215694955 hasAuthorship W3215694955A5035116488 @default.
- W3215694955 hasAuthorship W3215694955A5040178914 @default.
- W3215694955 hasAuthorship W3215694955A5072598909 @default.
- W3215694955 hasAuthorship W3215694955A5085182122 @default.
- W3215694955 hasBestOaLocation W32156949551 @default.
- W3215694955 hasConcept C117760992 @default.
- W3215694955 hasConcept C133386390 @default.
- W3215694955 hasConcept C13965031 @default.
- W3215694955 hasConcept C145148216 @default.
- W3215694955 hasConcept C178790620 @default.
- W3215694955 hasConcept C179104552 @default.
- W3215694955 hasConcept C185592680 @default.
- W3215694955 hasConcept C191897082 @default.
- W3215694955 hasConcept C192562407 @default.
- W3215694955 hasConcept C2777303380 @default.
- W3215694955 hasConcept C2778853537 @default.
- W3215694955 hasConcept C2779303976 @default.
- W3215694955 hasConcept C2780104969 @default.
- W3215694955 hasConcept C44280652 @default.
- W3215694955 hasConcept C49040817 @default.
- W3215694955 hasConcept C517785266 @default.
- W3215694955 hasConcept C523546767 @default.
- W3215694955 hasConcept C54355233 @default.
- W3215694955 hasConcept C79090758 @default.
- W3215694955 hasConcept C86803240 @default.
- W3215694955 hasConceptScore W3215694955C117760992 @default.
- W3215694955 hasConceptScore W3215694955C133386390 @default.
- W3215694955 hasConceptScore W3215694955C13965031 @default.
- W3215694955 hasConceptScore W3215694955C145148216 @default.