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Effect of nanostructured carbon coatings on the electrochemical performance of Li(1.4)Ni(0.5)Mn(0.5)O(2+)(x)-based cathode materials

Nanocomposites of Li(1.4)Ni(0.5)Mn(0.5)O(2+)(x) and amorphous carbon were obtained by the pyrolysis of linear and cross-linked poly(vinyl alcohol) (PVA) in presence of Li(1.4)Ni(0.5)Mn(0.5)O(2+)(x). In the case of linear PVA, the formation of nanostructured carbon coatings on Li(1.4)Ni(0.5)Mn(0.5)O(...

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Autores principales: Kurilenko, Konstantin A, Shlyakhtin, Oleg A, Brylev, Oleg A, Petukhov, Dmitry I, Garshev, Alexey V
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Beilstein-Institut 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5238645/
https://www.ncbi.nlm.nih.gov/pubmed/28144544
http://dx.doi.org/10.3762/bjnano.7.187
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author Kurilenko, Konstantin A
Shlyakhtin, Oleg A
Brylev, Oleg A
Petukhov, Dmitry I
Garshev, Alexey V
author_facet Kurilenko, Konstantin A
Shlyakhtin, Oleg A
Brylev, Oleg A
Petukhov, Dmitry I
Garshev, Alexey V
author_sort Kurilenko, Konstantin A
collection PubMed
description Nanocomposites of Li(1.4)Ni(0.5)Mn(0.5)O(2+)(x) and amorphous carbon were obtained by the pyrolysis of linear and cross-linked poly(vinyl alcohol) (PVA) in presence of Li(1.4)Ni(0.5)Mn(0.5)O(2+)(x). In the case of linear PVA, the formation of nanostructured carbon coatings on Li(1.4)Ni(0.5)Mn(0.5)O(2+)(x) particles is observed, while for cross-linked PVA islands of mesoporous carbon are located on the boundaries of Li(1.4)Ni(0.5)Mn(0.5)O(2+)(x) particles. The presence of the carbon framework leads to a decrease of the polarization upon cycling and of the charge transfer resistance and to an increase in the apparent Li(+) diffusion coefficient from 10(−16) cm(2)·s(−1) (pure Li(1.4)Ni(0.5)Mn(0.5)O(2+)(x)) to 10(−13) cm(2)·s(−1). The nanosized carbon coatings also reduce the deep electrochemical degradation of Li(1.4)Ni(0.5)Mn(0.5)O(2+)(x) during electrochemical cycling. The nanocomposite obtained by the pyrolysis of linear PVA demonstrates higher values of the apparent lithium diffusion coefficient, a higher specific capacity and lower values of charge transfer resistance, which can be related to the more uniform carbon coatings and to the significant content of sp(2)-hybridized carbon detected by XPS and by Raman spectroscopy.
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spelling pubmed-52386452017-01-31 Effect of nanostructured carbon coatings on the electrochemical performance of Li(1.4)Ni(0.5)Mn(0.5)O(2+)(x)-based cathode materials Kurilenko, Konstantin A Shlyakhtin, Oleg A Brylev, Oleg A Petukhov, Dmitry I Garshev, Alexey V Beilstein J Nanotechnol Full Research Paper Nanocomposites of Li(1.4)Ni(0.5)Mn(0.5)O(2+)(x) and amorphous carbon were obtained by the pyrolysis of linear and cross-linked poly(vinyl alcohol) (PVA) in presence of Li(1.4)Ni(0.5)Mn(0.5)O(2+)(x). In the case of linear PVA, the formation of nanostructured carbon coatings on Li(1.4)Ni(0.5)Mn(0.5)O(2+)(x) particles is observed, while for cross-linked PVA islands of mesoporous carbon are located on the boundaries of Li(1.4)Ni(0.5)Mn(0.5)O(2+)(x) particles. The presence of the carbon framework leads to a decrease of the polarization upon cycling and of the charge transfer resistance and to an increase in the apparent Li(+) diffusion coefficient from 10(−16) cm(2)·s(−1) (pure Li(1.4)Ni(0.5)Mn(0.5)O(2+)(x)) to 10(−13) cm(2)·s(−1). The nanosized carbon coatings also reduce the deep electrochemical degradation of Li(1.4)Ni(0.5)Mn(0.5)O(2+)(x) during electrochemical cycling. The nanocomposite obtained by the pyrolysis of linear PVA demonstrates higher values of the apparent lithium diffusion coefficient, a higher specific capacity and lower values of charge transfer resistance, which can be related to the more uniform carbon coatings and to the significant content of sp(2)-hybridized carbon detected by XPS and by Raman spectroscopy. Beilstein-Institut 2016-12-09 /pmc/articles/PMC5238645/ /pubmed/28144544 http://dx.doi.org/10.3762/bjnano.7.187 Text en Copyright © 2016, Kurilenko et al. https://creativecommons.org/licenses/by/4.0https://www.beilstein-journals.org/bjnano/termsThis is an Open Access article under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited. The license is subject to the Beilstein Journal of Nanotechnology terms and conditions: (https://www.beilstein-journals.org/bjnano/terms)
spellingShingle Full Research Paper
Kurilenko, Konstantin A
Shlyakhtin, Oleg A
Brylev, Oleg A
Petukhov, Dmitry I
Garshev, Alexey V
Effect of nanostructured carbon coatings on the electrochemical performance of Li(1.4)Ni(0.5)Mn(0.5)O(2+)(x)-based cathode materials
title Effect of nanostructured carbon coatings on the electrochemical performance of Li(1.4)Ni(0.5)Mn(0.5)O(2+)(x)-based cathode materials
title_full Effect of nanostructured carbon coatings on the electrochemical performance of Li(1.4)Ni(0.5)Mn(0.5)O(2+)(x)-based cathode materials
title_fullStr Effect of nanostructured carbon coatings on the electrochemical performance of Li(1.4)Ni(0.5)Mn(0.5)O(2+)(x)-based cathode materials
title_full_unstemmed Effect of nanostructured carbon coatings on the electrochemical performance of Li(1.4)Ni(0.5)Mn(0.5)O(2+)(x)-based cathode materials
title_short Effect of nanostructured carbon coatings on the electrochemical performance of Li(1.4)Ni(0.5)Mn(0.5)O(2+)(x)-based cathode materials
title_sort effect of nanostructured carbon coatings on the electrochemical performance of li(1.4)ni(0.5)mn(0.5)o(2+)(x)-based cathode materials
topic Full Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5238645/
https://www.ncbi.nlm.nih.gov/pubmed/28144544
http://dx.doi.org/10.3762/bjnano.7.187
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