Matches in SemOpenAlex for { <https://semopenalex.org/work/W2945155211> ?p ?o ?g. }
- W2945155211 endingPage "100322" @default.
- W2945155211 startingPage "100322" @default.
- W2945155211 abstract "Abstract The nanostructured zinc-doped cobalt ferrites (Zn x Co 1−x Fe2O4 where x ranges from 0.0 to 0.6 with the step of 0.2) were prepared by combustion method using curd as a green fuel. The prepared nanoparticles were further characterized using XRD, SEM with EDAX, TEM, FTIR, UV-DRS, and luminescence spectroscopy. From the XRD, it shows that these nanomaterials exhibit average crystallite size in the range ∼ 12-21 nm with inverse cubic spinel structure. The agglomerated and spherical structure of the nanoparticles is confirmed by SEM and TEM. The vibrational stretching modes of tetrahedral (582 cm−1) and octahedral (385 cm−1) sites were confirmed by FTIR. Further, density functional theory (DFT) analysis was carried out in order to study the electronic properties of cobalt ferrite and zinc-doped cobalt ferrite nanostructures. The band gap results for pure CoFe2O4 and Zn-doped CoFe2O4 nanoparticles were closer to the experimental values. The luminescence spectrum shows peaks correspond to violet, blue, green, yellow and orange emission. The photodegradation studies of obtained nanoparticles were evaluated for the degradation of Congo red and Evans blue dyes under visible light irradiation. Pure CoFe2O4 and Zn-doped CoFe2O4 nanoparticles were inspected against both gram-positive (Staphylococcus aureus) and the gram-negative (Salmonella typhi) bacteria for antibacterial studies. The gram-negative bacterium Salmonella typhi shows high antibacterial activity with the inhibition zone of Zn-doped CoFe2O4 (22 mm) compared to pure CoFe2O4 (16 mm)" @default.
- W2945155211 created "2019-05-29" @default.
- W2945155211 creator A5029395038 @default.
- W2945155211 creator A5042315494 @default.
- W2945155211 creator A5046506894 @default.
- W2945155211 creator A5053284500 @default.
- W2945155211 creator A5079484160 @default.
- W2945155211 creator A5090195582 @default.
- W2945155211 date "2019-07-01" @default.
- W2945155211 modified "2023-10-11" @default.
- W2945155211 title "Green synthesis of zinc doped cobalt ferrite nanoparticles: Structural, optical, photocatalytic and antibacterial studies" @default.
- W2945155211 cites W1984222346 @default.
- W2945155211 cites W1999790289 @default.
- W2945155211 cites W2000114523 @default.
- W2945155211 cites W2036113194 @default.
- W2945155211 cites W2072314666 @default.
- W2945155211 cites W2075869736 @default.
- W2945155211 cites W2087384721 @default.
- W2945155211 cites W2090543195 @default.
- W2945155211 cites W2098295609 @default.
- W2945155211 cites W2113180957 @default.
- W2945155211 cites W2117894566 @default.
- W2945155211 cites W2147830901 @default.
- W2945155211 cites W2157186545 @default.
- W2945155211 cites W2311474054 @default.
- W2945155211 cites W2462646781 @default.
- W2945155211 cites W2524059634 @default.
- W2945155211 cites W2525619574 @default.
- W2945155211 cites W2529156850 @default.
- W2945155211 cites W2531545883 @default.
- W2945155211 cites W2553169506 @default.
- W2945155211 cites W2555393232 @default.
- W2945155211 cites W2591225719 @default.
- W2945155211 cites W2591311580 @default.
- W2945155211 cites W2597535296 @default.
- W2945155211 cites W2598491963 @default.
- W2945155211 cites W2605115595 @default.
- W2945155211 cites W2605333217 @default.
- W2945155211 cites W2612346171 @default.
- W2945155211 cites W2614884619 @default.
- W2945155211 cites W2618723297 @default.
- W2945155211 cites W2620557093 @default.
- W2945155211 cites W2620754603 @default.
- W2945155211 cites W2620877728 @default.
- W2945155211 cites W2736510480 @default.
- W2945155211 cites W2745347873 @default.
- W2945155211 cites W2747438330 @default.
- W2945155211 cites W2753251664 @default.
- W2945155211 cites W2759197338 @default.
- W2945155211 cites W2766597400 @default.
- W2945155211 cites W2766716960 @default.
- W2945155211 cites W2768927332 @default.
- W2945155211 cites W2769958345 @default.
- W2945155211 cites W2772875367 @default.
- W2945155211 cites W2783178270 @default.
- W2945155211 cites W2789640730 @default.
- W2945155211 cites W2790885603 @default.
- W2945155211 cites W2790893058 @default.
- W2945155211 cites W2791616911 @default.
- W2945155211 cites W2792786153 @default.
- W2945155211 cites W2794508231 @default.
- W2945155211 cites W2797862813 @default.
- W2945155211 cites W2798263162 @default.
- W2945155211 cites W2801144609 @default.
- W2945155211 cites W2801730444 @default.
- W2945155211 cites W2802739492 @default.
- W2945155211 cites W2803220443 @default.
- W2945155211 cites W2868060315 @default.
- W2945155211 cites W2885711474 @default.
- W2945155211 cites W2890385131 @default.
- W2945155211 cites W2890695735 @default.
- W2945155211 cites W2890772137 @default.
- W2945155211 cites W2892444927 @default.
- W2945155211 cites W2898795583 @default.
- W2945155211 cites W2899122297 @default.
- W2945155211 cites W2901627499 @default.
- W2945155211 cites W2903436101 @default.
- W2945155211 cites W2903511250 @default.
- W2945155211 cites W2904040767 @default.
- W2945155211 cites W2904802720 @default.
- W2945155211 cites W2907085158 @default.
- W2945155211 cites W2908946186 @default.
- W2945155211 cites W2910402097 @default.
- W2945155211 cites W2910475095 @default.
- W2945155211 cites W2912584392 @default.
- W2945155211 cites W2912894385 @default.
- W2945155211 cites W2914076352 @default.
- W2945155211 cites W2915847380 @default.
- W2945155211 cites W2915889381 @default.
- W2945155211 cites W2917853811 @default.
- W2945155211 cites W2920041674 @default.
- W2945155211 cites W2924866018 @default.
- W2945155211 cites W2928334740 @default.
- W2945155211 cites W3206606417 @default.
- W2945155211 cites W762286600 @default.
- W2945155211 cites W2777885233 @default.
- W2945155211 doi "https://doi.org/10.1016/j.nanoso.2019.100322" @default.
- W2945155211 hasPublicationYear "2019" @default.