Matches in SemOpenAlex for { <https://semopenalex.org/work/W4313837296> ?p ?o ?g. }
- W4313837296 endingPage "3046" @default.
- W4313837296 startingPage "3037" @default.
- W4313837296 abstract "Nanocarbons (NCs) consisting of carbon nanotubes (CNTs) and carbon nanofibers (CNFs) were coated on the surface of nickel foam (NF) via a chemical vapor deposition method. The CNFs formed conductive networks on NF, while the CNTs grew perpendicular to the surface of the CNFs, accompanied with the formation of Ni nanoparticles (Ni NPs) at the end of CNTs. The unique Ni-NCs-coated NF with a porous structure was applied as the three-dimensional (3D) current collector of lithium-sulfur (Li-S) batteries, which provided enough space to accommodate the electrode materials inside itself. Therefore, the 3D interconnected conductive framework of the coated NF collector merged in the electrode materials shortened the path of electron transport, and the generated Ni NPs could adsorb lithium polysulfides (LiPSs) and effectively accelerated the conversion kinetics of LiPSs as well, thereby suppressing the shuttle effect. Moreover, the rigid framework of NF would also constrain the movement of the electrode compositions, which benefited the stability of the Li-S batteries. As a matter of fact, the Li-S battery based on the Ni-NCs-coated NF collector delivered an initial discharge capacity as high as 1472 mAh g-1 at 0.1C and outstanding high rate capability at 3C (802 mAh g-1). Additionally, low decay rates of 0.067 and 0.08% at 0.2C (300 cycles) and 0.5C (500 cycles) have been obtained, respectively. Overall, our prepared Ni-NCs-coated NF collector is promising for the application in high-performance Li-S batteries." @default.
- W4313837296 created "2023-01-09" @default.
- W4313837296 creator A5010657139 @default.
- W4313837296 creator A5011675030 @default.
- W4313837296 creator A5012120268 @default.
- W4313837296 creator A5023987954 @default.
- W4313837296 creator A5036442675 @default.
- W4313837296 creator A5040009629 @default.
- W4313837296 creator A5041366989 @default.
- W4313837296 creator A5041388659 @default.
- W4313837296 creator A5054030311 @default.
- W4313837296 creator A5059861565 @default.
- W4313837296 creator A5062752921 @default.
- W4313837296 creator A5082412394 @default.
- W4313837296 date "2023-01-09" @default.
- W4313837296 modified "2023-10-12" @default.
- W4313837296 title "Nickel Foam Coated by Ni Nanoparticle-Decorated 3D Nanocarbons as a Freestanding Host for High-Performance Lithium–Sulfur Batteries" @default.
- W4313837296 cites W1158182481 @default.
- W4313837296 cites W1620090426 @default.
- W4313837296 cites W1970077408 @default.
- W4313837296 cites W1974789788 @default.
- W4313837296 cites W1977928242 @default.
- W4313837296 cites W1979777098 @default.
- W4313837296 cites W1992692225 @default.
- W4313837296 cites W2009860903 @default.
- W4313837296 cites W2023806038 @default.
- W4313837296 cites W2027801264 @default.
- W4313837296 cites W2028017301 @default.
- W4313837296 cites W2033150237 @default.
- W4313837296 cites W2034072545 @default.
- W4313837296 cites W2037664458 @default.
- W4313837296 cites W2048109037 @default.
- W4313837296 cites W2051509069 @default.
- W4313837296 cites W2056319290 @default.
- W4313837296 cites W2058208815 @default.
- W4313837296 cites W2085293309 @default.
- W4313837296 cites W2086244098 @default.
- W4313837296 cites W2091875228 @default.
- W4313837296 cites W2104232665 @default.
- W4313837296 cites W2108118782 @default.
- W4313837296 cites W2114741090 @default.
- W4313837296 cites W2137648524 @default.
- W4313837296 cites W2151207643 @default.
- W4313837296 cites W2154145425 @default.
- W4313837296 cites W2156360482 @default.
- W4313837296 cites W2156700638 @default.
- W4313837296 cites W2212387780 @default.
- W4313837296 cites W2260420489 @default.
- W4313837296 cites W2270589204 @default.
- W4313837296 cites W2324000835 @default.
- W4313837296 cites W2326232602 @default.
- W4313837296 cites W2328134238 @default.
- W4313837296 cites W2371002555 @default.
- W4313837296 cites W2406725458 @default.
- W4313837296 cites W2424278293 @default.
- W4313837296 cites W2469663468 @default.
- W4313837296 cites W2482083820 @default.
- W4313837296 cites W2566509792 @default.
- W4313837296 cites W2612686288 @default.
- W4313837296 cites W2729373193 @default.
- W4313837296 cites W2753050978 @default.
- W4313837296 cites W2754915660 @default.
- W4313837296 cites W2769094268 @default.
- W4313837296 cites W2808420241 @default.
- W4313837296 cites W2822962024 @default.
- W4313837296 cites W2836757501 @default.
- W4313837296 cites W2883157818 @default.
- W4313837296 cites W2899242859 @default.
- W4313837296 cites W2903151785 @default.
- W4313837296 cites W2913959819 @default.
- W4313837296 cites W2914981239 @default.
- W4313837296 cites W2944253853 @default.
- W4313837296 cites W2944657003 @default.
- W4313837296 cites W2969500079 @default.
- W4313837296 cites W2979307829 @default.
- W4313837296 cites W2981735276 @default.
- W4313837296 cites W2982882897 @default.
- W4313837296 cites W2992030576 @default.
- W4313837296 cites W2998930231 @default.
- W4313837296 cites W3021191463 @default.
- W4313837296 cites W3022575194 @default.
- W4313837296 cites W3037881519 @default.
- W4313837296 cites W3053569526 @default.
- W4313837296 cites W3130018540 @default.
- W4313837296 cites W3165225243 @default.
- W4313837296 cites W4245318672 @default.
- W4313837296 doi "https://doi.org/10.1021/acsami.2c19987" @default.
- W4313837296 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/36622847" @default.
- W4313837296 hasPublicationYear "2023" @default.
- W4313837296 type Work @default.
- W4313837296 citedByCount "2" @default.
- W4313837296 countsByYear W43138372962023 @default.
- W4313837296 crossrefType "journal-article" @default.
- W4313837296 hasAuthorship W4313837296A5010657139 @default.
- W4313837296 hasAuthorship W4313837296A5011675030 @default.
- W4313837296 hasAuthorship W4313837296A5012120268 @default.
- W4313837296 hasAuthorship W4313837296A5023987954 @default.
- W4313837296 hasAuthorship W4313837296A5036442675 @default.