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- W2890601006 endingPage "747" @default.
- W2890601006 startingPage "747" @default.
- W2890601006 abstract "The research on supercapacitors has been attractive due to their large power density, fast charge/discharge speed and long lifespan. The electrode materials for supercapacitors are thus intensively investigated to improve the electrochemical performances. Various transition metal layered double hydroxides (LDHs) with a hydrotalcite-like structure have been developed to be promising electrode materials. Earth-abundant metal hydroxides are very suitable electrode materials due to the low cost and high specific capacity. This is a review paper on NiMn LDHs for supercapacitor application. We focus particularly on the recent published papers using NiMn LDHs as electrode materials for supercapacitors. The preparation methods for NiMn LDHs are introduced first. Then, the structural design and chemical modification of NiMn LDH materials, as well as the composites and films derived from NiMn LDHs are discussed. These approaches are proven to be effective to enhance the performance of supercapacitor. Finally, the reports related to NiMn LDH-based asymmetric supercapacitors are summarized. A brief discussion of the future development of NiMn LDHs is also provided." @default.
- W2890601006 created "2018-09-27" @default.
- W2890601006 creator A5069923266 @default.
- W2890601006 creator A5072439444 @default.
- W2890601006 creator A5077808352 @default.
- W2890601006 date "2018-09-20" @default.
- W2890601006 modified "2023-10-05" @default.
- W2890601006 title "Research Progress of NiMn Layered Double Hydroxides for Supercapacitors: A Review" @default.
- W2890601006 cites W1001710263 @default.
- W2890601006 cites W1591551585 @default.
- W2890601006 cites W1655819369 @default.
- W2890601006 cites W1766161044 @default.
- W2890601006 cites W1963404397 @default.
- W2890601006 cites W1965769863 @default.
- W2890601006 cites W1969247256 @default.
- W2890601006 cites W1976445760 @default.
- W2890601006 cites W1983637992 @default.
- W2890601006 cites W1995951220 @default.
- W2890601006 cites W2005696625 @default.
- W2890601006 cites W2006331787 @default.
- W2890601006 cites W2013967279 @default.
- W2890601006 cites W2027068777 @default.
- W2890601006 cites W2046118496 @default.
- W2890601006 cites W2054555899 @default.
- W2890601006 cites W2059175519 @default.
- W2890601006 cites W2062267997 @default.
- W2890601006 cites W2083245120 @default.
- W2890601006 cites W2084553513 @default.
- W2890601006 cites W2085537249 @default.
- W2890601006 cites W2105391577 @default.
- W2890601006 cites W2169270587 @default.
- W2890601006 cites W2185789182 @default.
- W2890601006 cites W2199915028 @default.
- W2890601006 cites W2261061885 @default.
- W2890601006 cites W2266170533 @default.
- W2890601006 cites W2276106395 @default.
- W2890601006 cites W2291888163 @default.
- W2890601006 cites W2314612952 @default.
- W2890601006 cites W2316493215 @default.
- W2890601006 cites W2322744598 @default.
- W2890601006 cites W2336454673 @default.
- W2890601006 cites W2340744176 @default.
- W2890601006 cites W2341987304 @default.
- W2890601006 cites W2343057635 @default.
- W2890601006 cites W2408651073 @default.
- W2890601006 cites W2409325548 @default.
- W2890601006 cites W2500464826 @default.
- W2890601006 cites W2513817863 @default.
- W2890601006 cites W2524698999 @default.
- W2890601006 cites W2528975145 @default.
- W2890601006 cites W2529553957 @default.
- W2890601006 cites W2531312696 @default.
- W2890601006 cites W2563279163 @default.
- W2890601006 cites W2597866693 @default.
- W2890601006 cites W2610487034 @default.
- W2890601006 cites W2726738359 @default.
- W2890601006 cites W2727331010 @default.
- W2890601006 cites W2730769510 @default.
- W2890601006 cites W2737842176 @default.
- W2890601006 cites W2739048369 @default.
- W2890601006 cites W2741183871 @default.
- W2890601006 cites W2742028956 @default.
- W2890601006 cites W2744023661 @default.
- W2890601006 cites W2744135092 @default.
- W2890601006 cites W2745259296 @default.
- W2890601006 cites W2752426808 @default.
- W2890601006 cites W2754936424 @default.
- W2890601006 cites W2755082258 @default.
- W2890601006 cites W2755175440 @default.
- W2890601006 cites W2761903167 @default.
- W2890601006 cites W2766618837 @default.
- W2890601006 cites W2767785879 @default.
- W2890601006 cites W2769563497 @default.
- W2890601006 cites W2770520469 @default.
- W2890601006 cites W2773089566 @default.
- W2890601006 cites W2775193740 @default.
- W2890601006 cites W2777319924 @default.
- W2890601006 cites W2780200149 @default.
- W2890601006 cites W2794283663 @default.
- W2890601006 cites W2794763695 @default.
- W2890601006 cites W2794965164 @default.
- W2890601006 cites W2800902265 @default.
- W2890601006 cites W2805911796 @default.
- W2890601006 cites W2806024164 @default.
- W2890601006 cites W2806046814 @default.
- W2890601006 doi "https://doi.org/10.3390/nano8100747" @default.
- W2890601006 hasPubMedCentralId "https://www.ncbi.nlm.nih.gov/pmc/articles/6215097" @default.
- W2890601006 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/30241330" @default.
- W2890601006 hasPublicationYear "2018" @default.
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