Matches in SemOpenAlex for { <https://semopenalex.org/work/W2930768594> ?p ?o ?g. }
- W2930768594 endingPage "185" @default.
- W2930768594 startingPage "179" @default.
- W2930768594 abstract "In this reported work, the potential application of MnO2 nanopowder for photocatalytic and the electrocatalytic applications is explored. The MnO2 nanopowder has been synthesized through sonochemical route using KMnO4 and poly-ethylene glycol as the reducing agent. Structural and optical analysis (XRD, TEM, FTIR, XPS and UV–visible) confirmed the formation of nanocrystalline MnO2 network. The adsorption and photocatalytic performance of synthesized MnO2 was tested for degradation of methylene blue dye and p-nitrophenol (2 mg/L) under dark chamber and household CFL lamp exposure, respectively. The electrochemical studies in alkaline (0.5 M KOH) medium shows the electric double layer capacitance of 7.4 mFcm−2 suggesting its potential application for energy storage devices. The synthesized compound exhibited excellent stability after 1000 CV cycles (∼4% current loss) where Volmer reaction was observed as the rate determining step for the electrocatalytic hydrogen evolution reaction." @default.
- W2930768594 created "2019-04-11" @default.
- W2930768594 creator A5001033968 @default.
- W2930768594 creator A5025999954 @default.
- W2930768594 creator A5056887470 @default.
- W2930768594 creator A5079734384 @default.
- W2930768594 date "2019-07-01" @default.
- W2930768594 modified "2023-09-30" @default.
- W2930768594 title "Facile sono-chemical synthesis of nanocrystalline MnO2 for catalytic and capacitive applications" @default.
- W2930768594 cites W1659763352 @default.
- W2930768594 cites W1680705506 @default.
- W2930768594 cites W1854025783 @default.
- W2930768594 cites W1863672753 @default.
- W2930768594 cites W1970159516 @default.
- W2930768594 cites W1977197829 @default.
- W2930768594 cites W1993727287 @default.
- W2930768594 cites W1997396982 @default.
- W2930768594 cites W2007727079 @default.
- W2930768594 cites W2008616587 @default.
- W2930768594 cites W2010783598 @default.
- W2930768594 cites W2016685857 @default.
- W2930768594 cites W2018359639 @default.
- W2930768594 cites W2019320333 @default.
- W2930768594 cites W2020076121 @default.
- W2930768594 cites W2021874639 @default.
- W2930768594 cites W2027883342 @default.
- W2930768594 cites W2028535387 @default.
- W2930768594 cites W2029816545 @default.
- W2930768594 cites W2045941644 @default.
- W2930768594 cites W2050606590 @default.
- W2930768594 cites W2076926854 @default.
- W2930768594 cites W2080973079 @default.
- W2930768594 cites W2083430267 @default.
- W2930768594 cites W2087967585 @default.
- W2930768594 cites W2128537354 @default.
- W2930768594 cites W2156709147 @default.
- W2930768594 cites W2194949026 @default.
- W2930768594 cites W2274194421 @default.
- W2930768594 cites W2275657277 @default.
- W2930768594 cites W2298809210 @default.
- W2930768594 cites W2312619999 @default.
- W2930768594 cites W2333262005 @default.
- W2930768594 cites W2347206017 @default.
- W2930768594 cites W2509883496 @default.
- W2930768594 cites W2512295523 @default.
- W2930768594 cites W2521820988 @default.
- W2930768594 cites W2585492571 @default.
- W2930768594 cites W2589628153 @default.
- W2930768594 cites W2617116272 @default.
- W2930768594 cites W2745350262 @default.
- W2930768594 cites W2748409895 @default.
- W2930768594 cites W2752638498 @default.
- W2930768594 cites W2755948512 @default.
- W2930768594 cites W2763185676 @default.
- W2930768594 cites W2772535169 @default.
- W2930768594 cites W2791485341 @default.
- W2930768594 cites W2799328608 @default.
- W2930768594 cites W2808767310 @default.
- W2930768594 cites W2809168591 @default.
- W2930768594 cites W2885498335 @default.
- W2930768594 cites W2900005068 @default.
- W2930768594 cites W2901655367 @default.
- W2930768594 cites W2903878761 @default.
- W2930768594 cites W4382134433 @default.
- W2930768594 cites W600112732 @default.
- W2930768594 doi "https://doi.org/10.1016/j.physb.2019.04.002" @default.
- W2930768594 hasPublicationYear "2019" @default.
- W2930768594 type Work @default.
- W2930768594 sameAs 2930768594 @default.
- W2930768594 citedByCount "23" @default.
- W2930768594 countsByYear W29307685942020 @default.
- W2930768594 countsByYear W29307685942021 @default.
- W2930768594 countsByYear W29307685942022 @default.
- W2930768594 crossrefType "journal-article" @default.
- W2930768594 hasAuthorship W2930768594A5001033968 @default.
- W2930768594 hasAuthorship W2930768594A5025999954 @default.
- W2930768594 hasAuthorship W2930768594A5056887470 @default.
- W2930768594 hasAuthorship W2930768594A5079734384 @default.
- W2930768594 hasConcept C104663316 @default.
- W2930768594 hasConcept C127413603 @default.
- W2930768594 hasConcept C13965031 @default.
- W2930768594 hasConcept C140676511 @default.
- W2930768594 hasConcept C147789679 @default.
- W2930768594 hasConcept C160892712 @default.
- W2930768594 hasConcept C161790260 @default.
- W2930768594 hasConcept C171250308 @default.
- W2930768594 hasConcept C17525397 @default.
- W2930768594 hasConcept C175708663 @default.
- W2930768594 hasConcept C178790620 @default.
- W2930768594 hasConcept C185592680 @default.
- W2930768594 hasConcept C192562407 @default.
- W2930768594 hasConcept C2777516009 @default.
- W2930768594 hasConcept C2779191827 @default.
- W2930768594 hasConcept C42360764 @default.
- W2930768594 hasConcept C49040817 @default.
- W2930768594 hasConcept C52859227 @default.
- W2930768594 hasConcept C65165184 @default.
- W2930768594 hasConceptScore W2930768594C104663316 @default.