Matches in SemOpenAlex for { <https://semopenalex.org/work/W4309737897> ?p ?o ?g. }
- W4309737897 endingPage "8211" @default.
- W4309737897 startingPage "8211" @default.
- W4309737897 abstract "Silica nanoparticles (SiO2 NPs) are one of the most well-studied inorganic nanoparticles for many applications. They offer the advantages of tunable size, biocompatibility, porous structure, and larger surface area. Thus, in this study, a high yield of SiO2 NPs was produced via the chemical treatment of rice husk ash by the sol-gel method. Characteristics of the prepared SiO2 NPs were validated using different characterization techniques. Accordingly, the phase, chemical composition, morphological, and spectroscopic properties of the prepared sample were studied. The average particle size of the SiO2 NPs was found to be approximately 60-80 nm and the surface area was 78.52 m²/g. The prepared SiO2 NPs were examined as photocatalysts for the degradation of methyl orange (MO) dye under UV irradiation. It was found that the intensity of the characteristic absorption band of MO decreased gradually with exposure time increasing, which means the successful photodegradation of MO by SiO2 NPs. Moreover, the antibacterial activity of obtained SiO2 NPs was investigated by counting the coliform bacteria in the surface water using the most probable number (MPN) index method. The results revealed that the MPN of coliform bacteria untreated and treated by SiO2 NPs was estimated to be 170 CFU/100 mL and 10 CFU/100 mL, respectively, resulting in bacterial growth inhibition of 94.12%." @default.
- W4309737897 created "2022-11-29" @default.
- W4309737897 creator A5019060858 @default.
- W4309737897 creator A5023588390 @default.
- W4309737897 creator A5027838773 @default.
- W4309737897 creator A5035139694 @default.
- W4309737897 creator A5054889050 @default.
- W4309737897 creator A5066596278 @default.
- W4309737897 date "2022-11-18" @default.
- W4309737897 modified "2023-10-18" @default.
- W4309737897 title "Behavior of Silica Nanoparticles Synthesized from Rice Husk Ash by the Sol–Gel Method as a Photocatalytic and Antibacterial Agent" @default.
- W4309737897 cites W1908453662 @default.
- W4309737897 cites W1963780229 @default.
- W4309737897 cites W1972495543 @default.
- W4309737897 cites W1973956876 @default.
- W4309737897 cites W1984892490 @default.
- W4309737897 cites W1995539803 @default.
- W4309737897 cites W1996876829 @default.
- W4309737897 cites W2007021929 @default.
- W4309737897 cites W2009685901 @default.
- W4309737897 cites W2044544212 @default.
- W4309737897 cites W2060804114 @default.
- W4309737897 cites W2066545998 @default.
- W4309737897 cites W2070849391 @default.
- W4309737897 cites W2083519288 @default.
- W4309737897 cites W2098774251 @default.
- W4309737897 cites W2110213038 @default.
- W4309737897 cites W2125684439 @default.
- W4309737897 cites W2152064437 @default.
- W4309737897 cites W2164221822 @default.
- W4309737897 cites W2273961730 @default.
- W4309737897 cites W2287658819 @default.
- W4309737897 cites W2334630516 @default.
- W4309737897 cites W2513788509 @default.
- W4309737897 cites W2588034686 @default.
- W4309737897 cites W2611067916 @default.
- W4309737897 cites W2728155877 @default.
- W4309737897 cites W2744078894 @default.
- W4309737897 cites W2754522876 @default.
- W4309737897 cites W2755215334 @default.
- W4309737897 cites W2757057230 @default.
- W4309737897 cites W2769014675 @default.
- W4309737897 cites W2789414926 @default.
- W4309737897 cites W2791783845 @default.
- W4309737897 cites W2792957958 @default.
- W4309737897 cites W2796277309 @default.
- W4309737897 cites W2806432392 @default.
- W4309737897 cites W2831970769 @default.
- W4309737897 cites W2895451453 @default.
- W4309737897 cites W2898452515 @default.
- W4309737897 cites W2949435101 @default.
- W4309737897 cites W2954091831 @default.
- W4309737897 cites W2982654003 @default.
- W4309737897 cites W2989842207 @default.
- W4309737897 cites W2997883621 @default.
- W4309737897 cites W3003939577 @default.
- W4309737897 cites W3016944952 @default.
- W4309737897 cites W3042671030 @default.
- W4309737897 cites W3048641747 @default.
- W4309737897 cites W3087794990 @default.
- W4309737897 cites W3090605997 @default.
- W4309737897 cites W3107348684 @default.
- W4309737897 cites W3127564368 @default.
- W4309737897 cites W3136676909 @default.
- W4309737897 cites W3172743312 @default.
- W4309737897 cites W3175467593 @default.
- W4309737897 cites W3180190504 @default.
- W4309737897 cites W3193650617 @default.
- W4309737897 cites W3198253456 @default.
- W4309737897 cites W3201701852 @default.
- W4309737897 cites W4210281956 @default.
- W4309737897 cites W4214916255 @default.
- W4309737897 cites W4214924289 @default.
- W4309737897 cites W4223436847 @default.
- W4309737897 cites W4224903849 @default.
- W4309737897 cites W4225327653 @default.
- W4309737897 cites W4281249632 @default.
- W4309737897 cites W4281618540 @default.
- W4309737897 cites W4282826106 @default.
- W4309737897 cites W4286267905 @default.
- W4309737897 cites W4293214067 @default.
- W4309737897 cites W4295338376 @default.
- W4309737897 cites W4296118021 @default.
- W4309737897 doi "https://doi.org/10.3390/ma15228211" @default.
- W4309737897 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/36431696" @default.
- W4309737897 hasPublicationYear "2022" @default.
- W4309737897 type Work @default.
- W4309737897 citedByCount "4" @default.
- W4309737897 countsByYear W43097378972022 @default.
- W4309737897 countsByYear W43097378972023 @default.
- W4309737897 crossrefType "journal-article" @default.
- W4309737897 hasAuthorship W4309737897A5019060858 @default.
- W4309737897 hasAuthorship W4309737897A5023588390 @default.
- W4309737897 hasAuthorship W4309737897A5027838773 @default.
- W4309737897 hasAuthorship W4309737897A5035139694 @default.
- W4309737897 hasAuthorship W4309737897A5054889050 @default.
- W4309737897 hasAuthorship W4309737897A5066596278 @default.
- W4309737897 hasBestOaLocation W43097378971 @default.