Matches in SemOpenAlex for { <https://semopenalex.org/work/W2897062735> ?p ?o ?g. }
- W2897062735 endingPage "1801149" @default.
- W2897062735 startingPage "1801149" @default.
- W2897062735 abstract "Controllable synthesis of 2D carbon nanosheets with high heteroatom-doping level, large specific surface area, and hierarchically pore structure is difficult and desired. In this work, a novel and simple self-sacrificing in situ formed dual-template strategy is first developed to synthesize N/S codoped hierarchically porous carbon nanosheets. The in-situ formed g-C3N4 and amorphous ZnO act as self-sacrificing templates on account of their thermal decomposition and evaporation at higher temperature. The N/S codoped hierarchically porous carbon nanosheets simultaneously possess high heteroatom-doping level (N: 10.51 wt%; S: 1.71 wt%), large specific surface area (904.63 m2 g−1), and abundant hierarchically porous structure. Particularly, this material possesses a high content of pyridinic-N and pyrrolic-N configuration (65.66%). These unique structure advantages of N/S codoped hierarchically porous carbon nanosheets contribute to high oxygen reduction electrocatalytic activity in both basic and acidic environments. Additionally, as the anode material for sodium-ion batteries, the material also displays a high reversible capacity of 270.1 mAh g−1 at a current density of 100 mA g−1 and high stability (160.1 mAh g−1 after 2000 cycles at 1000 mA g−1 with a capacity retention of 82.3%). These results indicate a great potential of the material in energy conversion and storage applications." @default.
- W2897062735 created "2018-10-26" @default.
- W2897062735 creator A5007791781 @default.
- W2897062735 creator A5024178189 @default.
- W2897062735 creator A5047244598 @default.
- W2897062735 creator A5076801177 @default.
- W2897062735 creator A5085613060 @default.
- W2897062735 date "2018-10-21" @default.
- W2897062735 modified "2023-10-18" @default.
- W2897062735 title "A Self‐Sacrificing Dual‐Template Strategy to Heteroatom‐Enriched Porous Carbon Nanosheets with High Pyridinic‐N and Pyrrolic‐N Content for Oxygen Reduction Reaction and Sodium Storage" @default.
- W2897062735 cites W1936492193 @default.
- W2897062735 cites W1961750053 @default.
- W2897062735 cites W1964154048 @default.
- W2897062735 cites W1966808250 @default.
- W2897062735 cites W1976560488 @default.
- W2897062735 cites W1986692659 @default.
- W2897062735 cites W1986858008 @default.
- W2897062735 cites W1989966367 @default.
- W2897062735 cites W1994481181 @default.
- W2897062735 cites W1995153219 @default.
- W2897062735 cites W1995375198 @default.
- W2897062735 cites W1997460046 @default.
- W2897062735 cites W2017819412 @default.
- W2897062735 cites W2023646705 @default.
- W2897062735 cites W2024679983 @default.
- W2897062735 cites W2032570058 @default.
- W2897062735 cites W2046635712 @default.
- W2897062735 cites W2058061670 @default.
- W2897062735 cites W2060954649 @default.
- W2897062735 cites W2062888297 @default.
- W2897062735 cites W2066334685 @default.
- W2897062735 cites W2070469412 @default.
- W2897062735 cites W2074014712 @default.
- W2897062735 cites W2075146812 @default.
- W2897062735 cites W2080571881 @default.
- W2897062735 cites W2083457177 @default.
- W2897062735 cites W2088565063 @default.
- W2897062735 cites W2090005769 @default.
- W2897062735 cites W2097487396 @default.
- W2897062735 cites W2101467353 @default.
- W2897062735 cites W2105685140 @default.
- W2897062735 cites W2106379686 @default.
- W2897062735 cites W2111470825 @default.
- W2897062735 cites W2121730809 @default.
- W2897062735 cites W2134079286 @default.
- W2897062735 cites W2154089012 @default.
- W2897062735 cites W2163409681 @default.
- W2897062735 cites W2171545802 @default.
- W2897062735 cites W2185048183 @default.
- W2897062735 cites W2190453002 @default.
- W2897062735 cites W2193181987 @default.
- W2897062735 cites W221877467 @default.
- W2897062735 cites W2228665277 @default.
- W2897062735 cites W2260789390 @default.
- W2897062735 cites W2272252865 @default.
- W2897062735 cites W2280157353 @default.
- W2897062735 cites W2288083229 @default.
- W2897062735 cites W2315508557 @default.
- W2897062735 cites W2328025663 @default.
- W2897062735 cites W2329280036 @default.
- W2897062735 cites W2341491217 @default.
- W2897062735 cites W2341965634 @default.
- W2897062735 cites W2346795724 @default.
- W2897062735 cites W2395367273 @default.
- W2897062735 cites W2411853908 @default.
- W2897062735 cites W2418813302 @default.
- W2897062735 cites W2474539519 @default.
- W2897062735 cites W2528073460 @default.
- W2897062735 cites W2532458833 @default.
- W2897062735 cites W2556400068 @default.
- W2897062735 cites W2564108053 @default.
- W2897062735 cites W2738260977 @default.
- W2897062735 cites W2767948854 @default.
- W2897062735 cites W2781723224 @default.
- W2897062735 cites W2791171147 @default.
- W2897062735 cites W2802370159 @default.
- W2897062735 cites W2807282856 @default.
- W2897062735 cites W3191424865 @default.
- W2897062735 cites W4212777649 @default.
- W2897062735 cites W784332680 @default.
- W2897062735 doi "https://doi.org/10.1002/admi.201801149" @default.
- W2897062735 hasPublicationYear "2018" @default.
- W2897062735 type Work @default.
- W2897062735 sameAs 2897062735 @default.
- W2897062735 citedByCount "18" @default.
- W2897062735 countsByYear W28970627352019 @default.
- W2897062735 countsByYear W28970627352020 @default.
- W2897062735 countsByYear W28970627352021 @default.
- W2897062735 countsByYear W28970627352022 @default.
- W2897062735 countsByYear W28970627352023 @default.
- W2897062735 crossrefType "journal-article" @default.
- W2897062735 hasAuthorship W2897062735A5007791781 @default.
- W2897062735 hasAuthorship W2897062735A5024178189 @default.
- W2897062735 hasAuthorship W2897062735A5047244598 @default.
- W2897062735 hasAuthorship W2897062735A5076801177 @default.
- W2897062735 hasAuthorship W2897062735A5085613060 @default.
- W2897062735 hasConcept C104779481 @default.
- W2897062735 hasConcept C127413603 @default.