Matches in SemOpenAlex for { <https://semopenalex.org/work/W3118489268> ?p ?o ?g. }
- W3118489268 endingPage "2494" @default.
- W3118489268 startingPage "2489" @default.
- W3118489268 abstract "Different from traditional metal-support heterogenous catalysts, inverse heterogeneous catalysts, in which the surface of metal is decorated by metal oxide, have recently attracted increasing interests owing to the unique interfacial effect and electronic structure. However, a deep insight into the effect of metal-oxide interaction on the catalytic performance still remains a great challenge. In our work, an inverse hematite/palladium (Fe2O3/Pd) hybrid nanostructure, i.e., the active Fe2O3 ultrathin oxide layers partially covering on the surface of Pd nanoparticles (NPs), exhibited superior electrocatalytic performance towards methanol oxidation reaction (MOR) as compared to the bare Pd NPs based on density functional theory calculation. The charge could transfer from Pd to Fe2O3 driven by the built-in potential at the interface of Pd and Fe2O3, which favors the downshift of d band center of Pd. With the assistance of interfacial hydroxyl OH*, the cleavage of OH and CH in CH3OH could take place much easily with lower barrier energy on Fe2O3/Pd than that on pure Pd via two electrons transferring reaction pathways. Our results highlight that the synergy of Pd and Fe2O3 at the interface could facilitate the electrochemical transformation of methanol into formaldehyde assisted with interfacial hydroxyl OH*." @default.
- W3118489268 created "2021-01-18" @default.
- W3118489268 creator A5005278461 @default.
- W3118489268 creator A5007259440 @default.
- W3118489268 creator A5018830876 @default.
- W3118489268 creator A5032201780 @default.
- W3118489268 creator A5041682448 @default.
- W3118489268 creator A5049544865 @default.
- W3118489268 creator A5063551301 @default.
- W3118489268 creator A5086609429 @default.
- W3118489268 date "2021-08-01" @default.
- W3118489268 modified "2023-10-14" @default.
- W3118489268 title "Fine-tuning inverse metal-support interaction boosts electrochemical transformation of methanol into formaldehyde based on density functional theory" @default.
- W3118489268 cites W1828238677 @default.
- W3118489268 cites W1976784016 @default.
- W3118489268 cites W2010945344 @default.
- W3118489268 cites W2024973284 @default.
- W3118489268 cites W2039996507 @default.
- W3118489268 cites W2041165508 @default.
- W3118489268 cites W2088608669 @default.
- W3118489268 cites W2099773424 @default.
- W3118489268 cites W2102468960 @default.
- W3118489268 cites W2103089766 @default.
- W3118489268 cites W2125470567 @default.
- W3118489268 cites W2135398996 @default.
- W3118489268 cites W2169819122 @default.
- W3118489268 cites W2298642986 @default.
- W3118489268 cites W2313538464 @default.
- W3118489268 cites W2326484497 @default.
- W3118489268 cites W2573377826 @default.
- W3118489268 cites W2579009013 @default.
- W3118489268 cites W2602237473 @default.
- W3118489268 cites W2603654887 @default.
- W3118489268 cites W2614110670 @default.
- W3118489268 cites W2754594264 @default.
- W3118489268 cites W2788481021 @default.
- W3118489268 cites W2788761128 @default.
- W3118489268 cites W2792938143 @default.
- W3118489268 cites W2800384031 @default.
- W3118489268 cites W2806260854 @default.
- W3118489268 cites W2808722167 @default.
- W3118489268 cites W2810211945 @default.
- W3118489268 cites W2894932394 @default.
- W3118489268 cites W2900580278 @default.
- W3118489268 cites W2906654872 @default.
- W3118489268 cites W2911309755 @default.
- W3118489268 cites W2911524313 @default.
- W3118489268 cites W2917488426 @default.
- W3118489268 cites W2984736004 @default.
- W3118489268 cites W2999260653 @default.
- W3118489268 cites W3009920978 @default.
- W3118489268 cites W3017798025 @default.
- W3118489268 cites W3032509992 @default.
- W3118489268 cites W3035115406 @default.
- W3118489268 cites W3040458748 @default.
- W3118489268 cites W3056953629 @default.
- W3118489268 cites W3083598198 @default.
- W3118489268 cites W3094089648 @default.
- W3118489268 cites W3116757267 @default.
- W3118489268 doi "https://doi.org/10.1016/j.cclet.2020.12.057" @default.
- W3118489268 hasPublicationYear "2021" @default.
- W3118489268 type Work @default.
- W3118489268 sameAs 3118489268 @default.
- W3118489268 citedByCount "14" @default.
- W3118489268 countsByYear W31184892682021 @default.
- W3118489268 countsByYear W31184892682022 @default.
- W3118489268 countsByYear W31184892682023 @default.
- W3118489268 crossrefType "journal-article" @default.
- W3118489268 hasAuthorship W3118489268A5005278461 @default.
- W3118489268 hasAuthorship W3118489268A5007259440 @default.
- W3118489268 hasAuthorship W3118489268A5018830876 @default.
- W3118489268 hasAuthorship W3118489268A5032201780 @default.
- W3118489268 hasAuthorship W3118489268A5041682448 @default.
- W3118489268 hasAuthorship W3118489268A5049544865 @default.
- W3118489268 hasAuthorship W3118489268A5063551301 @default.
- W3118489268 hasAuthorship W3118489268A5086609429 @default.
- W3118489268 hasConcept C123669783 @default.
- W3118489268 hasConcept C127413603 @default.
- W3118489268 hasConcept C147597530 @default.
- W3118489268 hasConcept C147789679 @default.
- W3118489268 hasConcept C152365726 @default.
- W3118489268 hasConcept C155672457 @default.
- W3118489268 hasConcept C161790260 @default.
- W3118489268 hasConcept C171250308 @default.
- W3118489268 hasConcept C17525397 @default.
- W3118489268 hasConcept C178790620 @default.
- W3118489268 hasConcept C179104552 @default.
- W3118489268 hasConcept C185592680 @default.
- W3118489268 hasConcept C186187911 @default.
- W3118489268 hasConcept C192562407 @default.
- W3118489268 hasConcept C199289684 @default.
- W3118489268 hasConcept C2775930285 @default.
- W3118489268 hasConcept C2779131772 @default.
- W3118489268 hasConcept C2779607525 @default.
- W3118489268 hasConcept C2779851234 @default.
- W3118489268 hasConcept C42360764 @default.
- W3118489268 hasConcept C502130503 @default.
- W3118489268 hasConcept C52859227 @default.