Matches in SemOpenAlex for { <https://semopenalex.org/work/W2130925812> ?p ?o ?g. }
- W2130925812 endingPage "528" @default.
- W2130925812 startingPage "518" @default.
- W2130925812 abstract "The electrooxidation of ethylene glycol (EG) and glycerol (G) has been studied: in alkaline media, in passive as well as active direct ethylene glycol fuel cells (DEGFCs), and in direct glycerol fuel cells (DGFCs) containing Pd-(Ni-Zn)/C as an anode electrocatalyst, that is, Pd nanoparticles supported on a Ni-Zn phase. For comparison, an anode electrocatalyst containing Pd nanoparticles (Pd/C) has been also investigated. The oxidation of EG and G has primarily been investigated in half cells. The results obtained have highlighted the excellent electrocatalytic activity of Pd-(Ni-Zn)/C in terms of peak current density, which is as high as 3300 A g(Pd)(-1) for EG and 2150 A g(Pd)(-1) for G. Membrane-electrode assemblies (MEA) have been fabricated using Pd-(Ni-Zn)/C anodes, proprietary Fe-Co/C cathodes, and Tokuyama A-201 anion-exchange membranes. The MEA performance has been evaluated in either passive or active cells fed with aqueous solutions of 5 wt % EG and 5 wt % G. In view of the peak-power densities obtained in the temperature range from 20 to 80 °C, at Pd loadings as low as 1 mg cm(-2) at the anode, these results show that Pd-(Ni-Zn)/C can be classified amongst the best performing electrocatalysts ever reported for EG and G oxidation." @default.
- W2130925812 created "2016-06-24" @default.
- W2130925812 creator A5020516490 @default.
- W2130925812 creator A5038183338 @default.
- W2130925812 creator A5042229475 @default.
- W2130925812 creator A5044685979 @default.
- W2130925812 creator A5048647592 @default.
- W2130925812 creator A5051173983 @default.
- W2130925812 creator A5074361931 @default.
- W2130925812 creator A5074711447 @default.
- W2130925812 creator A5078747289 @default.
- W2130925812 date "2013-02-12" @default.
- W2130925812 modified "2023-10-16" @default.
- W2130925812 title "Electrooxidation of Ethylene Glycol and Glycerol on Pd-(Ni-Zn)/C Anodes in Direct Alcohol Fuel Cells" @default.
- W2130925812 cites W1485845941 @default.
- W2130925812 cites W1599863509 @default.
- W2130925812 cites W1977683397 @default.
- W2130925812 cites W1978360435 @default.
- W2130925812 cites W1979769537 @default.
- W2130925812 cites W1980623871 @default.
- W2130925812 cites W1988277551 @default.
- W2130925812 cites W1991289089 @default.
- W2130925812 cites W1998003361 @default.
- W2130925812 cites W2001794283 @default.
- W2130925812 cites W2003135444 @default.
- W2130925812 cites W2011141916 @default.
- W2130925812 cites W2013647641 @default.
- W2130925812 cites W2014607415 @default.
- W2130925812 cites W2014747355 @default.
- W2130925812 cites W2019684550 @default.
- W2130925812 cites W2019889716 @default.
- W2130925812 cites W2024355474 @default.
- W2130925812 cites W2026239935 @default.
- W2130925812 cites W2030145917 @default.
- W2130925812 cites W2041547840 @default.
- W2130925812 cites W2041578606 @default.
- W2130925812 cites W2043458039 @default.
- W2130925812 cites W2049491168 @default.
- W2130925812 cites W2051393837 @default.
- W2130925812 cites W2056439607 @default.
- W2130925812 cites W2062424819 @default.
- W2130925812 cites W2068102197 @default.
- W2130925812 cites W2068524964 @default.
- W2130925812 cites W2073928062 @default.
- W2130925812 cites W2076400369 @default.
- W2130925812 cites W2077133240 @default.
- W2130925812 cites W2080392601 @default.
- W2130925812 cites W2082806021 @default.
- W2130925812 cites W2083710131 @default.
- W2130925812 cites W2088928912 @default.
- W2130925812 cites W2093896534 @default.
- W2130925812 cites W2095699355 @default.
- W2130925812 cites W2100251744 @default.
- W2130925812 cites W2103738125 @default.
- W2130925812 cites W2136741165 @default.
- W2130925812 cites W2138443830 @default.
- W2130925812 cites W2143977792 @default.
- W2130925812 cites W2335086656 @default.
- W2130925812 cites W4240708081 @default.
- W2130925812 cites W4245533288 @default.
- W2130925812 doi "https://doi.org/10.1002/cssc.201200866" @default.
- W2130925812 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/23404853" @default.
- W2130925812 hasPublicationYear "2013" @default.
- W2130925812 type Work @default.
- W2130925812 sameAs 2130925812 @default.
- W2130925812 citedByCount "136" @default.
- W2130925812 countsByYear W21309258122013 @default.
- W2130925812 countsByYear W21309258122014 @default.
- W2130925812 countsByYear W21309258122015 @default.
- W2130925812 countsByYear W21309258122016 @default.
- W2130925812 countsByYear W21309258122017 @default.
- W2130925812 countsByYear W21309258122018 @default.
- W2130925812 countsByYear W21309258122019 @default.
- W2130925812 countsByYear W21309258122020 @default.
- W2130925812 countsByYear W21309258122021 @default.
- W2130925812 countsByYear W21309258122022 @default.
- W2130925812 countsByYear W21309258122023 @default.
- W2130925812 crossrefType "journal-article" @default.
- W2130925812 hasAuthorship W2130925812A5020516490 @default.
- W2130925812 hasAuthorship W2130925812A5038183338 @default.
- W2130925812 hasAuthorship W2130925812A5042229475 @default.
- W2130925812 hasAuthorship W2130925812A5044685979 @default.
- W2130925812 hasAuthorship W2130925812A5048647592 @default.
- W2130925812 hasAuthorship W2130925812A5051173983 @default.
- W2130925812 hasAuthorship W2130925812A5074361931 @default.
- W2130925812 hasAuthorship W2130925812A5074711447 @default.
- W2130925812 hasAuthorship W2130925812A5078747289 @default.
- W2130925812 hasConcept C13965031 @default.
- W2130925812 hasConcept C147789679 @default.
- W2130925812 hasConcept C161790260 @default.
- W2130925812 hasConcept C17525397 @default.
- W2130925812 hasConcept C178790620 @default.
- W2130925812 hasConcept C179104552 @default.
- W2130925812 hasConcept C185592680 @default.
- W2130925812 hasConcept C192562407 @default.
- W2130925812 hasConcept C2777516009 @default.
- W2130925812 hasConcept C2780881558 @default.
- W2130925812 hasConcept C33989665 @default.