2018
DOI: 10.1016/j.mseb.2017.12.018
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Bi-metal organic framework derived nickel manganese oxide spinel for lithium-ion battery anode

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Cited by 56 publications
(30 citation statements)
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“…Because the GITT fits well the Fick's law of diffusion, the E versus t 1/2 plots both display good linear relationshipsi nt he discharge/charge processes, verifyingt hat it can be used as the proper value of dE(t)/t 1/2 for the rational calculation of the Li + diffusion coefficient. [27] It further provest hat the Cu-CATN Ws have good electronic conductivity andr emarkable electrochemicalkinetics. Furthermore, electrochemical impedance spectroscopy (EIS) of our Cu-CATN Ws was performed.…”
Section: Resultsmentioning
confidence: 83%
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“…Because the GITT fits well the Fick's law of diffusion, the E versus t 1/2 plots both display good linear relationshipsi nt he discharge/charge processes, verifyingt hat it can be used as the proper value of dE(t)/t 1/2 for the rational calculation of the Li + diffusion coefficient. [27] It further provest hat the Cu-CATN Ws have good electronic conductivity andr emarkable electrochemicalkinetics. Furthermore, electrochemical impedance spectroscopy (EIS) of our Cu-CATN Ws was performed.…”
Section: Resultsmentioning
confidence: 83%
“…The EIS data of the Cu-CAT electrode is analyzed with the equivalent circuit model (Figure 6b)b yu sing the Zsimpwin software,a nd the values of ohmic resistance( R s )a nd R ct for the Cu-CATN Ws are estimated as approximately 8a nd 305 W,r espectively,m uch smaller than those for other reported MOFs including ZIF-67 [40] and Ni/Mn-1,3,5-benzenetricarboxylate-based bimetal-organic frameworkderived NiMn 2 O 4 . [27] It further provest hat the Cu-CATN Ws have good electronic conductivity andr emarkable electrochemicalkinetics. ChemSusChem 2019, 12,5051 -5058 www.chemsuschem.org…”
Section: Resultsmentioning
confidence: 83%
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“…[102][103][104] The C 1s spectrum shown in Fig. 4d has peaks at binding energies of 284.8 eV (alkyl and aromatic C-C, C-H), 286.3 eV (C-OH, C-O-C and C-N) 52,53 and 288.7 eV (C]O). 112 C 1s peaks can be attributed to the phyto-capping molecules as well as some contribution from adventitious carbon.…”
Section: Resultsmentioning
confidence: 99%
“…Moreover, the morphology of those nanostructures is seen to affect their electrochemical performance. Therefore, designing metal oxide nanostructures of controlled morphology and size with good electrical conductivity is a challenge for their utilization in energy storage devices such as electrochemical supercapacitors [12,26].…”
Section: Nimn 2 O 4 As Supercapacitor Applicationsmentioning
confidence: 99%