Matches in SemOpenAlex for { <https://semopenalex.org/work/W3132877881> ?p ?o ?g. }
- W3132877881 endingPage "126318" @default.
- W3132877881 startingPage "126318" @default.
- W3132877881 abstract "The nanocomposites of tungsten oxide and cadmium sulfide (WO3-nCdS) with different mass ratios (n = 0 %, 5 %, 15 %, 30 % and 100 %) of CdS in WO3 were synthesized by pulsed laser ablation in liquid (PLAL). Anchoring of CdS on WO3 brought about attractive material characteristics like, enhanced visible light absorption and reduced electron-hole recombination through the z-scheme charge transfer between WO3 and CdS, which were experimentally confirmed by the absorption spectra and photoluminescence spectra respectively. These new features in the material resulted in the enhancement of photo catalytic degradation of methylene blue (MB) dye under visible light; particularly WO3-30 %CdS nanocomposite achieved complete dye degradation in 230 min. Also, when the same nanocomposite is used as an electrode material in the supercapacitor, the areal capacitance (Ca) shows an enhancement in general and reached a level as high as 68.1 m F cm−2 equivalent to 121.2 F g−1 (from charge-discharge analysis), which can be attributed to the increased surface area in the WO3-nCdS nanocomposite. The fabricated device exhibited sufficiently large energy density of 7.7 μWh cm-2 corresponding to high power density of 254 μW cm−2." @default.
- W3132877881 created "2021-03-01" @default.
- W3132877881 creator A5002730499 @default.
- W3132877881 creator A5011132619 @default.
- W3132877881 creator A5027436691 @default.
- W3132877881 creator A5032882505 @default.
- W3132877881 creator A5040687823 @default.
- W3132877881 creator A5041172407 @default.
- W3132877881 creator A5045979660 @default.
- W3132877881 creator A5046875073 @default.
- W3132877881 creator A5076630554 @default.
- W3132877881 date "2021-05-01" @default.
- W3132877881 modified "2023-10-17" @default.
- W3132877881 title "Laser assisted anchoring of cadmium sulfide nanospheres into tungsten oxide nanosheets for enhanced photocatalytic and electrochemical energy storage applications" @default.
- W3132877881 cites W1965553968 @default.
- W3132877881 cites W1979330315 @default.
- W3132877881 cites W1993283847 @default.
- W3132877881 cites W1999874676 @default.
- W3132877881 cites W2000223594 @default.
- W3132877881 cites W2017318423 @default.
- W3132877881 cites W2019175146 @default.
- W3132877881 cites W2021597022 @default.
- W3132877881 cites W2022543701 @default.
- W3132877881 cites W2042320622 @default.
- W3132877881 cites W2048688645 @default.
- W3132877881 cites W2049505009 @default.
- W3132877881 cites W2060282801 @default.
- W3132877881 cites W2060707991 @default.
- W3132877881 cites W2065362358 @default.
- W3132877881 cites W2067307222 @default.
- W3132877881 cites W2072107252 @default.
- W3132877881 cites W2072390210 @default.
- W3132877881 cites W2077787587 @default.
- W3132877881 cites W2082251259 @default.
- W3132877881 cites W2086370221 @default.
- W3132877881 cites W2086726834 @default.
- W3132877881 cites W2091551050 @default.
- W3132877881 cites W2094137047 @default.
- W3132877881 cites W2122744166 @default.
- W3132877881 cites W2129264675 @default.
- W3132877881 cites W2141317958 @default.
- W3132877881 cites W2146028353 @default.
- W3132877881 cites W2146359829 @default.
- W3132877881 cites W2148201783 @default.
- W3132877881 cites W2154001996 @default.
- W3132877881 cites W2154359624 @default.
- W3132877881 cites W2393155514 @default.
- W3132877881 cites W2507642020 @default.
- W3132877881 cites W2516882057 @default.
- W3132877881 cites W2548218449 @default.
- W3132877881 cites W2553737765 @default.
- W3132877881 cites W2557672443 @default.
- W3132877881 cites W2559271574 @default.
- W3132877881 cites W2560775045 @default.
- W3132877881 cites W2561207596 @default.
- W3132877881 cites W2580226683 @default.
- W3132877881 cites W2590855502 @default.
- W3132877881 cites W2615580877 @default.
- W3132877881 cites W2746250662 @default.
- W3132877881 cites W2767507984 @default.
- W3132877881 cites W2774540375 @default.
- W3132877881 cites W2777101458 @default.
- W3132877881 cites W2784075434 @default.
- W3132877881 cites W2790394159 @default.
- W3132877881 cites W2790478711 @default.
- W3132877881 cites W2793318118 @default.
- W3132877881 cites W2794942920 @default.
- W3132877881 cites W2805576655 @default.
- W3132877881 cites W2807391166 @default.
- W3132877881 cites W2891389841 @default.
- W3132877881 cites W2898631199 @default.
- W3132877881 cites W2910329728 @default.
- W3132877881 cites W2913010159 @default.
- W3132877881 cites W2938502477 @default.
- W3132877881 cites W2943172936 @default.
- W3132877881 cites W2954108992 @default.
- W3132877881 cites W2972908694 @default.
- W3132877881 cites W2978516069 @default.
- W3132877881 cites W2979980293 @default.
- W3132877881 cites W2981239862 @default.
- W3132877881 cites W2996495341 @default.
- W3132877881 cites W3023283553 @default.
- W3132877881 cites W3033964236 @default.
- W3132877881 cites W3037224083 @default.
- W3132877881 cites W3037492877 @default.
- W3132877881 cites W3048312940 @default.
- W3132877881 cites W3091336126 @default.
- W3132877881 cites W3108606708 @default.
- W3132877881 cites W619198256 @default.
- W3132877881 cites W996603809 @default.
- W3132877881 doi "https://doi.org/10.1016/j.colsurfa.2021.126318" @default.
- W3132877881 hasPublicationYear "2021" @default.
- W3132877881 type Work @default.
- W3132877881 sameAs 3132877881 @default.
- W3132877881 citedByCount "15" @default.
- W3132877881 countsByYear W31328778812021 @default.
- W3132877881 countsByYear W31328778812022 @default.
- W3132877881 countsByYear W31328778812023 @default.