Matches in SemOpenAlex for { <https://semopenalex.org/work/W2102000918> ?p ?o ?g. }
- W2102000918 endingPage "175" @default.
- W2102000918 startingPage "165" @default.
- W2102000918 abstract "Abstract A facile one-step pyrolysis and activation synthesis method is utilized to convert a common biomass of willow catkin into interconnected porous carbon nanosheets (PCNs), and then followed by effective nitrogen and sulfur co-doping. Owing to the unique hollow and multilayered structure of willow catkin fiber, the pore structure of obtained carbons can be controlled by adjusting the mass ratio of raw material to alkali. As a result, the nitrogen and sulfur co-doped PCNs demonstrate a high specific capacitance of 298 F g−1 at 0.5 A g−1 and 233 F g−1 at 50 A g−1, revealing excellent rate performance. In addition, the electrode demonstrates superb cycling stability with only 2% capacitance loss after 10,000 cycles. Furthermore, the assembled symmetric cell with a wide voltage range of 1.8 V yields a remarkable specific energy of 21.0 Wh kg−1 at 180 W kg−1. These exciting results exhibit a green and low-cost design of electrode materials for high performance supercapacitors." @default.
- W2102000918 created "2016-06-24" @default.
- W2102000918 creator A5009971650 @default.
- W2102000918 creator A5043976312 @default.
- W2102000918 creator A5065870327 @default.
- W2102000918 creator A5070940162 @default.
- W2102000918 creator A5087802976 @default.
- W2102000918 date "2016-01-01" @default.
- W2102000918 modified "2023-10-17" @default.
- W2102000918 title "Nitrogen and sulfur co-doped porous carbon nanosheets derived from willow catkin for supercapacitors" @default.
- W2102000918 cites W1956723349 @default.
- W2102000918 cites W1965252829 @default.
- W2102000918 cites W1967504173 @default.
- W2102000918 cites W1971829588 @default.
- W2102000918 cites W1972135483 @default.
- W2102000918 cites W1978579483 @default.
- W2102000918 cites W1979615984 @default.
- W2102000918 cites W1984942707 @default.
- W2102000918 cites W1986268907 @default.
- W2102000918 cites W1992735556 @default.
- W2102000918 cites W1995323891 @default.
- W2102000918 cites W2007894999 @default.
- W2102000918 cites W2009503125 @default.
- W2102000918 cites W2020306845 @default.
- W2102000918 cites W2024095550 @default.
- W2102000918 cites W2026346772 @default.
- W2102000918 cites W2035691436 @default.
- W2102000918 cites W2037502361 @default.
- W2102000918 cites W2041998463 @default.
- W2102000918 cites W2045011420 @default.
- W2102000918 cites W2049214266 @default.
- W2102000918 cites W2053848721 @default.
- W2102000918 cites W2054033992 @default.
- W2102000918 cites W2055066968 @default.
- W2102000918 cites W2055787212 @default.
- W2102000918 cites W2059722537 @default.
- W2102000918 cites W2059872170 @default.
- W2102000918 cites W2065048347 @default.
- W2102000918 cites W2070048461 @default.
- W2102000918 cites W2070378895 @default.
- W2102000918 cites W2073429352 @default.
- W2102000918 cites W2081880411 @default.
- W2102000918 cites W2084245557 @default.
- W2102000918 cites W2088702034 @default.
- W2102000918 cites W2093844373 @default.
- W2102000918 cites W2093960360 @default.
- W2102000918 cites W2094196154 @default.
- W2102000918 cites W2094555803 @default.
- W2102000918 cites W2099074631 @default.
- W2102000918 cites W2101467353 @default.
- W2102000918 cites W2147624032 @default.
- W2102000918 cites W2148788329 @default.
- W2102000918 cites W2162677524 @default.
- W2102000918 cites W2162680336 @default.
- W2102000918 cites W2313026376 @default.
- W2102000918 cites W2325138980 @default.
- W2102000918 cites W2330376886 @default.
- W2102000918 cites W2335453246 @default.
- W2102000918 cites W2075021245 @default.
- W2102000918 doi "https://doi.org/10.1016/j.nanoen.2015.10.038" @default.
- W2102000918 hasPublicationYear "2016" @default.
- W2102000918 type Work @default.
- W2102000918 sameAs 2102000918 @default.
- W2102000918 citedByCount "1032" @default.
- W2102000918 countsByYear W21020009182016 @default.
- W2102000918 countsByYear W21020009182017 @default.
- W2102000918 countsByYear W21020009182018 @default.
- W2102000918 countsByYear W21020009182019 @default.
- W2102000918 countsByYear W21020009182020 @default.
- W2102000918 countsByYear W21020009182021 @default.
- W2102000918 countsByYear W21020009182022 @default.
- W2102000918 countsByYear W21020009182023 @default.
- W2102000918 crossrefType "journal-article" @default.
- W2102000918 hasAuthorship W2102000918A5009971650 @default.
- W2102000918 hasAuthorship W2102000918A5043976312 @default.
- W2102000918 hasAuthorship W2102000918A5065870327 @default.
- W2102000918 hasAuthorship W2102000918A5070940162 @default.
- W2102000918 hasAuthorship W2102000918A5087802976 @default.
- W2102000918 hasConcept C104779481 @default.
- W2102000918 hasConcept C127413603 @default.
- W2102000918 hasConcept C140205800 @default.
- W2102000918 hasConcept C147789679 @default.
- W2102000918 hasConcept C159985019 @default.
- W2102000918 hasConcept C171250308 @default.
- W2102000918 hasConcept C17525397 @default.
- W2102000918 hasConcept C178790620 @default.
- W2102000918 hasConcept C185592680 @default.
- W2102000918 hasConcept C191897082 @default.
- W2102000918 hasConcept C192562407 @default.
- W2102000918 hasConcept C2780844648 @default.
- W2102000918 hasConcept C30066665 @default.
- W2102000918 hasConcept C42360764 @default.
- W2102000918 hasConcept C49040817 @default.
- W2102000918 hasConcept C518881349 @default.
- W2102000918 hasConcept C537208039 @default.
- W2102000918 hasConcept C57863236 @default.
- W2102000918 hasConcept C59822182 @default.
- W2102000918 hasConcept C6585489 @default.