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The rational design of hierarchical MoS(2) nanosheet hollow spheres sandwiched between carbon and TiO(2)@graphite as an improved anode for lithium-ion batteries
Molybdenum disulfide (MoS(2)) shows high capacity but suffers from poor rate capability and rapid capacity decay, which greatly limit its practical applications in lithium-ion batteries. Herein, we successfully prepared MoS(2) nanosheet hollow spheres encapsulated into carbon and titanium dioxide@gr...
Autores principales: | , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
RSC
2019
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9416967/ https://www.ncbi.nlm.nih.gov/pubmed/36134216 http://dx.doi.org/10.1039/c9na00019d |
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author | Wang, Faze Li, Fanggang Zheng, Maojun Li, Yanbo Ma, Li |
author_facet | Wang, Faze Li, Fanggang Zheng, Maojun Li, Yanbo Ma, Li |
author_sort | Wang, Faze |
collection | PubMed |
description | Molybdenum disulfide (MoS(2)) shows high capacity but suffers from poor rate capability and rapid capacity decay, which greatly limit its practical applications in lithium-ion batteries. Herein, we successfully prepared MoS(2) nanosheet hollow spheres encapsulated into carbon and titanium dioxide@graphite, denoted as TiO(2)@G@MoS(2)@C, via hydrothermal and polymerization approaches. In this hierarchical architecture, the MoS(2) hollow sphere was sandwiched by graphite and an amorphous carbon shell; thus, TiO(2)@G@MoS(2)@C exhibited effectively enhanced electrical conductivity and withstood the volume changes; moreover, the aggregation and diffusion of the MoS(2) nanosheets were restricted; this advanced TiO(2)@G@MoS(2)@C fully combined the advantages of a three-dimensional architecture, hollow structure, carbon coating, and a mechanically robust TiO(2)@graphite support, achieving improved specific capacity and long-term cycling stability. In addition, it exhibited the high reversible specific capacity of 823 mA h g(−1) at the current density of 0.1 A g(−1) after 100 cycles, retaining almost 88% of the initial reversible capacity with the high coulombic efficiency of 99%. |
format | Online Article Text |
id | pubmed-9416967 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2019 |
publisher | RSC |
record_format | MEDLINE/PubMed |
spelling | pubmed-94169672022-09-20 The rational design of hierarchical MoS(2) nanosheet hollow spheres sandwiched between carbon and TiO(2)@graphite as an improved anode for lithium-ion batteries Wang, Faze Li, Fanggang Zheng, Maojun Li, Yanbo Ma, Li Nanoscale Adv Chemistry Molybdenum disulfide (MoS(2)) shows high capacity but suffers from poor rate capability and rapid capacity decay, which greatly limit its practical applications in lithium-ion batteries. Herein, we successfully prepared MoS(2) nanosheet hollow spheres encapsulated into carbon and titanium dioxide@graphite, denoted as TiO(2)@G@MoS(2)@C, via hydrothermal and polymerization approaches. In this hierarchical architecture, the MoS(2) hollow sphere was sandwiched by graphite and an amorphous carbon shell; thus, TiO(2)@G@MoS(2)@C exhibited effectively enhanced electrical conductivity and withstood the volume changes; moreover, the aggregation and diffusion of the MoS(2) nanosheets were restricted; this advanced TiO(2)@G@MoS(2)@C fully combined the advantages of a three-dimensional architecture, hollow structure, carbon coating, and a mechanically robust TiO(2)@graphite support, achieving improved specific capacity and long-term cycling stability. In addition, it exhibited the high reversible specific capacity of 823 mA h g(−1) at the current density of 0.1 A g(−1) after 100 cycles, retaining almost 88% of the initial reversible capacity with the high coulombic efficiency of 99%. RSC 2019-03-20 /pmc/articles/PMC9416967/ /pubmed/36134216 http://dx.doi.org/10.1039/c9na00019d Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/ |
spellingShingle | Chemistry Wang, Faze Li, Fanggang Zheng, Maojun Li, Yanbo Ma, Li The rational design of hierarchical MoS(2) nanosheet hollow spheres sandwiched between carbon and TiO(2)@graphite as an improved anode for lithium-ion batteries |
title | The rational design of hierarchical MoS(2) nanosheet hollow spheres sandwiched between carbon and TiO(2)@graphite as an improved anode for lithium-ion batteries |
title_full | The rational design of hierarchical MoS(2) nanosheet hollow spheres sandwiched between carbon and TiO(2)@graphite as an improved anode for lithium-ion batteries |
title_fullStr | The rational design of hierarchical MoS(2) nanosheet hollow spheres sandwiched between carbon and TiO(2)@graphite as an improved anode for lithium-ion batteries |
title_full_unstemmed | The rational design of hierarchical MoS(2) nanosheet hollow spheres sandwiched between carbon and TiO(2)@graphite as an improved anode for lithium-ion batteries |
title_short | The rational design of hierarchical MoS(2) nanosheet hollow spheres sandwiched between carbon and TiO(2)@graphite as an improved anode for lithium-ion batteries |
title_sort | rational design of hierarchical mos(2) nanosheet hollow spheres sandwiched between carbon and tio(2)@graphite as an improved anode for lithium-ion batteries |
topic | Chemistry |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9416967/ https://www.ncbi.nlm.nih.gov/pubmed/36134216 http://dx.doi.org/10.1039/c9na00019d |
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