Matches in SemOpenAlex for { <https://semopenalex.org/work/W4220778939> ?p ?o ?g. }
- W4220778939 endingPage "1350" @default.
- W4220778939 startingPage "1341" @default.
- W4220778939 abstract "Unique MoS2-SnS2 heterogeneous nanoplates have successfully in-situ grown on poly(3-(1-vinylimidazolium-3-yl)propane-1-sulfonate) functionalized polypyrrole/ graphene oxide (PVIPS/PPy/GO). PVIPS can attract heptamolybdate ion (Mo7O246−) and Sn4+ as the precursors by the ion-exchange, resulting in the simultaneous growth of 1T’-MoS2 and the berndtite-2T-type hexagonal SnS2 by the interfacial induced effect of PVIPS. The obtained MoS2-SnS2/ PVIPS/PPy/GO can serve as electrocatalysts, exhibiting good NRR performance by the synergistic effect. The semi-conducting SnS2 would limit the surface electron accessibility for suppressing HER process of 1T’-MoS2, while metallic 1T’-MoS2 might efficiently improve the NRR electroactivity of SnS2 by the creation of Mo-Sn-Sn trimer catalytic sites. Otherwise, the irreversible crystal phase transition has taken place during the NRR process. Partial 1T’-MoS2 and SnS2 have electrochemically reacted with N2, and irreversibly converted into Mo2N and SnxNz due to the formation of Mo−N and Sn−N bonding, meanwhile, partial SnS2 has been irreversibly evolved into SnS due to the reduction by the power source in the electrochemical system. It would put forward a new design idea for optimizing the preparation method and electrocatalytic activity of transition metal dichalcogenides." @default.
- W4220778939 created "2022-04-03" @default.
- W4220778939 creator A5003795651 @default.
- W4220778939 creator A5005925090 @default.
- W4220778939 creator A5007322337 @default.
- W4220778939 creator A5020902145 @default.
- W4220778939 creator A5027985599 @default.
- W4220778939 creator A5031884742 @default.
- W4220778939 creator A5036028069 @default.
- W4220778939 creator A5039706743 @default.
- W4220778939 creator A5041240994 @default.
- W4220778939 date "2022-05-01" @default.
- W4220778939 modified "2023-10-17" @default.
- W4220778939 title "Improved nitrogen reduction electroactivity by unique MoS2-SnS2 heterogeneous nanoplates supported on poly(zwitterionic liquids) functionalized polypyrrole/graphene oxide" @default.
- W4220778939 cites W1940696028 @default.
- W4220778939 cites W1985936163 @default.
- W4220778939 cites W1991120375 @default.
- W4220778939 cites W1992023766 @default.
- W4220778939 cites W1994400031 @default.
- W4220778939 cites W2007714312 @default.
- W4220778939 cites W2157604262 @default.
- W4220778939 cites W2332121883 @default.
- W4220778939 cites W2414522883 @default.
- W4220778939 cites W2530178513 @default.
- W4220778939 cites W2606700064 @default.
- W4220778939 cites W2609549095 @default.
- W4220778939 cites W2618054126 @default.
- W4220778939 cites W2754401945 @default.
- W4220778939 cites W2767966656 @default.
- W4220778939 cites W2789445630 @default.
- W4220778939 cites W2802094954 @default.
- W4220778939 cites W2807392714 @default.
- W4220778939 cites W2808865201 @default.
- W4220778939 cites W2811342849 @default.
- W4220778939 cites W2883090580 @default.
- W4220778939 cites W2894559290 @default.
- W4220778939 cites W2895128268 @default.
- W4220778939 cites W2907832494 @default.
- W4220778939 cites W2923509751 @default.
- W4220778939 cites W2942732317 @default.
- W4220778939 cites W2946174900 @default.
- W4220778939 cites W2946189669 @default.
- W4220778939 cites W2957351935 @default.
- W4220778939 cites W2975757376 @default.
- W4220778939 cites W2983000192 @default.
- W4220778939 cites W2990369118 @default.
- W4220778939 cites W2996382941 @default.
- W4220778939 cites W3002561092 @default.
- W4220778939 cites W3005209241 @default.
- W4220778939 cites W3006068278 @default.
- W4220778939 cites W3009101104 @default.
- W4220778939 cites W3013535808 @default.
- W4220778939 cites W3015277543 @default.
- W4220778939 cites W3016428242 @default.
- W4220778939 cites W3022444940 @default.
- W4220778939 cites W3043847042 @default.
- W4220778939 cites W3045569050 @default.
- W4220778939 cites W3132907780 @default.
- W4220778939 cites W3137130537 @default.
- W4220778939 cites W3139196637 @default.
- W4220778939 cites W3157916261 @default.
- W4220778939 cites W3173920216 @default.
- W4220778939 cites W3192885893 @default.
- W4220778939 cites W3194536748 @default.
- W4220778939 cites W2962721095 @default.
- W4220778939 doi "https://doi.org/10.1016/s1872-2067(21)63944-x" @default.
- W4220778939 hasPublicationYear "2022" @default.
- W4220778939 type Work @default.
- W4220778939 citedByCount "8" @default.
- W4220778939 countsByYear W42207789392022 @default.
- W4220778939 countsByYear W42207789392023 @default.
- W4220778939 crossrefType "journal-article" @default.
- W4220778939 hasAuthorship W4220778939A5003795651 @default.
- W4220778939 hasAuthorship W4220778939A5005925090 @default.
- W4220778939 hasAuthorship W4220778939A5007322337 @default.
- W4220778939 hasAuthorship W4220778939A5020902145 @default.
- W4220778939 hasAuthorship W4220778939A5027985599 @default.
- W4220778939 hasAuthorship W4220778939A5031884742 @default.
- W4220778939 hasAuthorship W4220778939A5036028069 @default.
- W4220778939 hasAuthorship W4220778939A5039706743 @default.
- W4220778939 hasAuthorship W4220778939A5041240994 @default.
- W4220778939 hasBestOaLocation W42207789392 @default.
- W4220778939 hasConcept C106773901 @default.
- W4220778939 hasConcept C127413603 @default.
- W4220778939 hasConcept C147789679 @default.
- W4220778939 hasConcept C161790260 @default.
- W4220778939 hasConcept C171250308 @default.
- W4220778939 hasConcept C17525397 @default.
- W4220778939 hasConcept C178790620 @default.
- W4220778939 hasConcept C179104552 @default.
- W4220778939 hasConcept C185592680 @default.
- W4220778939 hasConcept C191897082 @default.
- W4220778939 hasConcept C192562407 @default.
- W4220778939 hasConcept C2776345496 @default.
- W4220778939 hasConcept C2777232022 @default.
- W4220778939 hasConcept C2779851234 @default.
- W4220778939 hasConcept C30080830 @default.
- W4220778939 hasConcept C33989665 @default.