Matches in SemOpenAlex for { <https://semopenalex.org/work/W3029528140> ?p ?o ?g. }
- W3029528140 endingPage "123190" @default.
- W3029528140 startingPage "123190" @default.
- W3029528140 abstract "In this work, we modified the conventional wet chemical route used for synthesis of ZnO hierarchical structure (HS), and successfully obtained superior optical, photochemical and antimicrobial characteristics for ZnO-HS as a consequence of incorporation of hydrofluoric acid (HF). ZnO-HS is unique owing to its morphology with 2D interconnected nanosheets. Strategic use of HF led to appreciable reduction in sheet thickness (up to ~15 nm) of ZnO-HS while physicochemical attachment of Fluorine (F) was also realized. Antimicrobial activity of ZnO-HS against Escherichia coli was measured via pour plate method, and found to be significantly increased as a consequence of HF-based modification of ZnO-HS. In addition, resultant ZnO-HS exhibited higher deposition of CdS quantum-dots via pseudo-successive ionic layer adsorption and reaction (p-SILAR), affirming higher photocatalytic performance of ZnO/CdS hierarchical composite (HC). It was established that congo red (CR) dye was degraded ~15% more, when ZnO/CdS HC incorporating HF-based surface modification was used as a photocatalyst. Characteristic improvements in ZnO-HS were affirmed using diffuse reflectance spectroscopy, FTIR spectroscopy and SEM." @default.
- W3029528140 created "2020-06-05" @default.
- W3029528140 creator A5001083372 @default.
- W3029528140 creator A5006449729 @default.
- W3029528140 creator A5008036043 @default.
- W3029528140 creator A5025463585 @default.
- W3029528140 creator A5055734568 @default.
- W3029528140 creator A5076884162 @default.
- W3029528140 creator A5087499121 @default.
- W3029528140 date "2020-09-01" @default.
- W3029528140 modified "2023-10-06" @default.
- W3029528140 title "HF-based surface modification for enhanced photobiological and photochemical performance of ZnO and ZnO/CdS hierarchical structures" @default.
- W3029528140 cites W1247184866 @default.
- W3029528140 cites W1890017421 @default.
- W3029528140 cites W1963502455 @default.
- W3029528140 cites W1967652077 @default.
- W3029528140 cites W1972406184 @default.
- W3029528140 cites W1973489366 @default.
- W3029528140 cites W1975519135 @default.
- W3029528140 cites W1984328395 @default.
- W3029528140 cites W1990599699 @default.
- W3029528140 cites W1995123294 @default.
- W3029528140 cites W1996865642 @default.
- W3029528140 cites W2007014859 @default.
- W3029528140 cites W2012320667 @default.
- W3029528140 cites W2024949976 @default.
- W3029528140 cites W2034440089 @default.
- W3029528140 cites W2039844143 @default.
- W3029528140 cites W2048236405 @default.
- W3029528140 cites W2049540013 @default.
- W3029528140 cites W2053721838 @default.
- W3029528140 cites W2059146608 @default.
- W3029528140 cites W2081577998 @default.
- W3029528140 cites W2086271246 @default.
- W3029528140 cites W2088270224 @default.
- W3029528140 cites W2088943794 @default.
- W3029528140 cites W2115110079 @default.
- W3029528140 cites W2123372969 @default.
- W3029528140 cites W2128144957 @default.
- W3029528140 cites W2133224690 @default.
- W3029528140 cites W2141918308 @default.
- W3029528140 cites W2157580164 @default.
- W3029528140 cites W2162867689 @default.
- W3029528140 cites W2256334097 @default.
- W3029528140 cites W2351211710 @default.
- W3029528140 cites W2426721822 @default.
- W3029528140 cites W2607551548 @default.
- W3029528140 cites W2741914407 @default.
- W3029528140 cites W2753394988 @default.
- W3029528140 cites W2802018318 @default.
- W3029528140 cites W2890579058 @default.
- W3029528140 cites W2910481283 @default.
- W3029528140 cites W2920942086 @default.
- W3029528140 cites W2948195758 @default.
- W3029528140 cites W2958593845 @default.
- W3029528140 cites W2959199986 @default.
- W3029528140 cites W2969998908 @default.
- W3029528140 cites W2971597279 @default.
- W3029528140 doi "https://doi.org/10.1016/j.matchemphys.2020.123190" @default.
- W3029528140 hasPublicationYear "2020" @default.
- W3029528140 type Work @default.
- W3029528140 sameAs 3029528140 @default.
- W3029528140 citedByCount "10" @default.
- W3029528140 countsByYear W30295281402021 @default.
- W3029528140 countsByYear W30295281402022 @default.
- W3029528140 countsByYear W30295281402023 @default.
- W3029528140 crossrefType "journal-article" @default.
- W3029528140 hasAuthorship W3029528140A5001083372 @default.
- W3029528140 hasAuthorship W3029528140A5006449729 @default.
- W3029528140 hasAuthorship W3029528140A5008036043 @default.
- W3029528140 hasAuthorship W3029528140A5025463585 @default.
- W3029528140 hasAuthorship W3029528140A5055734568 @default.
- W3029528140 hasAuthorship W3029528140A5076884162 @default.
- W3029528140 hasAuthorship W3029528140A5087499121 @default.
- W3029528140 hasConcept C115537861 @default.
- W3029528140 hasConcept C121332964 @default.
- W3029528140 hasConcept C127413603 @default.
- W3029528140 hasConcept C145148216 @default.
- W3029528140 hasConcept C150394285 @default.
- W3029528140 hasConcept C156328458 @default.
- W3029528140 hasConcept C160892712 @default.
- W3029528140 hasConcept C161790260 @default.
- W3029528140 hasConcept C171250308 @default.
- W3029528140 hasConcept C178790620 @default.
- W3029528140 hasConcept C185592680 @default.
- W3029528140 hasConcept C191897082 @default.
- W3029528140 hasConcept C192562407 @default.
- W3029528140 hasConcept C2182769 @default.
- W3029528140 hasConcept C2776967294 @default.
- W3029528140 hasConcept C2779155187 @default.
- W3029528140 hasConcept C32891209 @default.
- W3029528140 hasConcept C42360764 @default.
- W3029528140 hasConcept C506198293 @default.
- W3029528140 hasConcept C62520636 @default.
- W3029528140 hasConcept C65165184 @default.
- W3029528140 hasConcept C75473681 @default.
- W3029528140 hasConceptScore W3029528140C115537861 @default.
- W3029528140 hasConceptScore W3029528140C121332964 @default.