Matches in SemOpenAlex for { <https://semopenalex.org/work/W4313594014> ?p ?o ?g. }
- W4313594014 endingPage "106555" @default.
- W4313594014 startingPage "106555" @default.
- W4313594014 abstract "Zeolitic imidazolate frameworks (ZIFs) are hopeful materials for energy storage due to their uniform pores, large specific surface area, and good stability. Particularly, the conductivity of Co-based ZIF-67 is 1000 times higher than that of Zn-based ZIF-8, making cobalt-based ZIF-67 widely studied as an energy storage material. At present, there are few reports on the direct synthesis of hollow-structured ZIF-67. Herein, hollow leaf-like Co-ZIF-67 is directly synthesized in an aqueous solution using a simple and environment-friendly method. Then, nickel‑molybdenum layered double hydroxides (NiMo-LDH) nanosheets were wrapped on the Co-ZIF-67 by a hydrothermal treatment. The resulting [email protected] composite has a specific capacitance of 1734 F g−1 (1 A g−1), and its asymmetric supercapacitor (ASC) provides a high energy density of 97.7 Wh kg−1 at a power density of 800 W kg−1 with excellent rate capability (at a power density of 7887 W kg−1 at 10 A g−1 and an energy density of 65.5 Wh kg−1) and cycling stability (88 % capacitance retention after 5000 cycles). The combination of the favorable features of Co-ZIF-67 and NiMo-LDHs and their synergistic effects, especially the unique three-dimensional interconnected nanostructure contributes to the enhanced properties; thus, the composites show great potential as electrode materials for supercapacitors." @default.
- W4313594014 created "2023-01-06" @default.
- W4313594014 creator A5003621477 @default.
- W4313594014 creator A5022334442 @default.
- W4313594014 creator A5039089320 @default.
- W4313594014 creator A5061621983 @default.
- W4313594014 creator A5062908965 @default.
- W4313594014 creator A5076583675 @default.
- W4313594014 date "2023-03-01" @default.
- W4313594014 modified "2023-10-18" @default.
- W4313594014 title "Nickel-molybdenum metal hydroxide wrapped ZIF-67 for supercapacitor applications" @default.
- W4313594014 cites W2025925068 @default.
- W4313594014 cites W2176899275 @default.
- W4313594014 cites W2521442615 @default.
- W4313594014 cites W2527805997 @default.
- W4313594014 cites W2605831958 @default.
- W4313594014 cites W2735139609 @default.
- W4313594014 cites W2753377532 @default.
- W4313594014 cites W2761720073 @default.
- W4313594014 cites W2762428437 @default.
- W4313594014 cites W2780774358 @default.
- W4313594014 cites W2783450276 @default.
- W4313594014 cites W2810670103 @default.
- W4313594014 cites W2872391595 @default.
- W4313594014 cites W2883291726 @default.
- W4313594014 cites W2885230561 @default.
- W4313594014 cites W2885460784 @default.
- W4313594014 cites W2903977736 @default.
- W4313594014 cites W2921123250 @default.
- W4313594014 cites W2922225124 @default.
- W4313594014 cites W2946363420 @default.
- W4313594014 cites W2973065714 @default.
- W4313594014 cites W2979943385 @default.
- W4313594014 cites W2999632988 @default.
- W4313594014 cites W3000237215 @default.
- W4313594014 cites W3012987428 @default.
- W4313594014 cites W3015483044 @default.
- W4313594014 cites W3036717744 @default.
- W4313594014 cites W3039859467 @default.
- W4313594014 cites W3087716625 @default.
- W4313594014 cites W3088627815 @default.
- W4313594014 cites W3090229120 @default.
- W4313594014 cites W3124653882 @default.
- W4313594014 cites W3133671804 @default.
- W4313594014 cites W3142564321 @default.
- W4313594014 cites W3160583758 @default.
- W4313594014 cites W3163646191 @default.
- W4313594014 cites W3172439449 @default.
- W4313594014 cites W3174376236 @default.
- W4313594014 cites W3185250461 @default.
- W4313594014 cites W3185665718 @default.
- W4313594014 cites W3188829198 @default.
- W4313594014 cites W3199138072 @default.
- W4313594014 cites W3201486380 @default.
- W4313594014 cites W3210115474 @default.
- W4313594014 cites W3211065244 @default.
- W4313594014 cites W4286666717 @default.
- W4313594014 cites W4292680649 @default.
- W4313594014 doi "https://doi.org/10.1016/j.est.2022.106555" @default.
- W4313594014 hasPublicationYear "2023" @default.
- W4313594014 type Work @default.
- W4313594014 citedByCount "2" @default.
- W4313594014 countsByYear W43135940142023 @default.
- W4313594014 crossrefType "journal-article" @default.
- W4313594014 hasAuthorship W4313594014A5003621477 @default.
- W4313594014 hasAuthorship W4313594014A5022334442 @default.
- W4313594014 hasAuthorship W4313594014A5039089320 @default.
- W4313594014 hasAuthorship W4313594014A5061621983 @default.
- W4313594014 hasAuthorship W4313594014A5062908965 @default.
- W4313594014 hasAuthorship W4313594014A5076583675 @default.
- W4313594014 hasConcept C104779481 @default.
- W4313594014 hasConcept C121332964 @default.
- W4313594014 hasConcept C127413603 @default.
- W4313594014 hasConcept C147789679 @default.
- W4313594014 hasConcept C150394285 @default.
- W4313594014 hasConcept C150581940 @default.
- W4313594014 hasConcept C159985019 @default.
- W4313594014 hasConcept C161790260 @default.
- W4313594014 hasConcept C163258240 @default.
- W4313594014 hasConcept C171250308 @default.
- W4313594014 hasConcept C17525397 @default.
- W4313594014 hasConcept C178790620 @default.
- W4313594014 hasConcept C179366358 @default.
- W4313594014 hasConcept C185592680 @default.
- W4313594014 hasConcept C191897082 @default.
- W4313594014 hasConcept C192562407 @default.
- W4313594014 hasConcept C21881925 @default.
- W4313594014 hasConcept C2775896084 @default.
- W4313594014 hasConcept C2778002958 @default.
- W4313594014 hasConcept C2780544068 @default.
- W4313594014 hasConcept C2780596747 @default.
- W4313594014 hasConcept C27983359 @default.
- W4313594014 hasConcept C30066665 @default.
- W4313594014 hasConcept C42360764 @default.
- W4313594014 hasConcept C504270822 @default.
- W4313594014 hasConcept C515602321 @default.
- W4313594014 hasConcept C52859227 @default.
- W4313594014 hasConcept C549387045 @default.