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- W3132324818 endingPage "100062" @default.
- W3132324818 startingPage "100062" @default.
- W3132324818 abstract "In this work, porous activated carbons (ACs) are synthesized from dead Ashoka leaves by a modified chemical activation method where KOH and K2CO3 are used as activating agent in different weight percentages. The irregular surface morphology, high surface area, and the substantial amount of micropores and mesopores volumes simultaneously have been found in the synthesized ACs. The surface morphology and porosity parameters of ACs have been found significant with changing the incorporated activating agents in the different weight percentages. These porous ACs derived from biowaste material have been tested as electrode material in the electric double-layer capacitors (EDLCs) with iongel polymer electrolyte (iPE). A series of iPEs have been prepared using PVdF-HFP polymer host, 1-ethyl-1-methylpyrrolidinium bis(trifluoromethylsulfonyl)imide ([PYR12][TFSI]) ionic liquid, and mixed organic carbonate-based plasticizers. EDLCs have been fabricated using AC-based electrodes and flexible iPE30 solid electrolyte. The high ionic conductivity (~6.11 × 10−3 S.cm−1 at 303 K), good electrochemical stability window (~ −2.74 V to +3.14 V vs. stainless steel electrodes), and flexible nature of the freestanding film of iPE30 provided outstanding compatibility with bio-derived AC electrodes. Cyclic voltammetry and galvanostatic charge–discharge studies have been performed, which show ideal and reversible capacitive features together with good cyclability of the fabricated EDLC cells." @default.
- W3132324818 created "2021-03-01" @default.
- W3132324818 creator A5027953728 @default.
- W3132324818 creator A5052151396 @default.
- W3132324818 creator A5068923219 @default.
- W3132324818 date "2021-03-01" @default.
- W3132324818 modified "2023-10-16" @default.
- W3132324818 title "Dead Ashoka (Saraca asoca) leaves–derived porous activated carbons and flexible iongel polymer electrolyte for high-energy-density electric double-layer capacitors" @default.
- W3132324818 cites W1134292783 @default.
- W3132324818 cites W1500133291 @default.
- W3132324818 cites W1556177135 @default.
- W3132324818 cites W1802407571 @default.
- W3132324818 cites W1980704616 @default.
- W3132324818 cites W1980758204 @default.
- W3132324818 cites W1982479518 @default.
- W3132324818 cites W1983612401 @default.
- W3132324818 cites W1985530487 @default.
- W3132324818 cites W1985609667 @default.
- W3132324818 cites W1995876931 @default.
- W3132324818 cites W1996317583 @default.
- W3132324818 cites W1998368930 @default.
- W3132324818 cites W2003072735 @default.
- W3132324818 cites W2003213349 @default.
- W3132324818 cites W2004178680 @default.
- W3132324818 cites W2007117722 @default.
- W3132324818 cites W2011254969 @default.
- W3132324818 cites W2012895093 @default.
- W3132324818 cites W2019621830 @default.
- W3132324818 cites W2022166030 @default.
- W3132324818 cites W2026922945 @default.
- W3132324818 cites W2038404351 @default.
- W3132324818 cites W2038981243 @default.
- W3132324818 cites W2042829386 @default.
- W3132324818 cites W2045306665 @default.
- W3132324818 cites W2055100431 @default.
- W3132324818 cites W2055787212 @default.
- W3132324818 cites W2058272047 @default.
- W3132324818 cites W2059507257 @default.
- W3132324818 cites W2060946109 @default.
- W3132324818 cites W2065362358 @default.
- W3132324818 cites W2067356722 @default.
- W3132324818 cites W2068308573 @default.
- W3132324818 cites W2068564466 @default.
- W3132324818 cites W2072462133 @default.
- W3132324818 cites W2075904417 @default.
- W3132324818 cites W2076953853 @default.
- W3132324818 cites W2084245557 @default.
- W3132324818 cites W2084577881 @default.
- W3132324818 cites W2086596546 @default.
- W3132324818 cites W2087134024 @default.
- W3132324818 cites W2087491059 @default.
- W3132324818 cites W2090028435 @default.
- W3132324818 cites W2092722786 @default.
- W3132324818 cites W2103303287 @default.
- W3132324818 cites W2116526807 @default.
- W3132324818 cites W2116720455 @default.
- W3132324818 cites W2121781138 @default.
- W3132324818 cites W2128443197 @default.
- W3132324818 cites W2133232936 @default.
- W3132324818 cites W2134270713 @default.
- W3132324818 cites W2152411537 @default.
- W3132324818 cites W2154191311 @default.
- W3132324818 cites W2205865907 @default.
- W3132324818 cites W2244195616 @default.
- W3132324818 cites W2271792463 @default.
- W3132324818 cites W2291321358 @default.
- W3132324818 cites W2301085974 @default.
- W3132324818 cites W2315937415 @default.
- W3132324818 cites W2318705370 @default.
- W3132324818 cites W2321827745 @default.
- W3132324818 cites W2413227829 @default.
- W3132324818 cites W2467425606 @default.
- W3132324818 cites W2556207026 @default.
- W3132324818 cites W2576822005 @default.
- W3132324818 cites W2579524338 @default.
- W3132324818 cites W2580253586 @default.
- W3132324818 cites W2588952146 @default.
- W3132324818 cites W2593686539 @default.
- W3132324818 cites W2607656752 @default.
- W3132324818 cites W2621375418 @default.
- W3132324818 cites W2771258254 @default.
- W3132324818 cites W2774749033 @default.
- W3132324818 cites W2782505880 @default.
- W3132324818 cites W2793536622 @default.
- W3132324818 cites W2890103636 @default.
- W3132324818 cites W2904892261 @default.
- W3132324818 cites W3017210340 @default.
- W3132324818 cites W3120579358 @default.
- W3132324818 doi "https://doi.org/10.1016/j.mtsust.2021.100062" @default.
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