2011
DOI: 10.1002/adma.201003294
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Porous Li4Ti5O12 Coated with N‐Doped Carbon from Ionic Liquids for Li‐Ion Batteries

Abstract: With the increasing environmental problems caused by conventional energy sources and the gradual depletion of oil resources, clean energy is becoming an important topic for the whole world. As an electrochemical energy storage device, the lithium ion battery, which has the highest energy density among secondary batteries, has been widely used in portable electronic devices, and has also been proposed for use in electric vehicles and large-scale energy storage. [1][2][3] However, the performance of current lith… Show more

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Cited by 758 publications
(490 citation statements)
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“…Additive-free LTO anodes have also shown enhanced performance, which has been ascribed to an increase in electrical conductivity of lithiated Li4+xTi5O12 phases formed as a result of discharge [124]. Porous [125][126][127][128] and hollow sphere [129,130] morphologies of LTO have displayed also superior performance as a result of their unique nanostructured form. Mesoporous thin-film electrodes have displayed electrical conductivity close to that of bulk LTO, resulting in appreciable performance [125].…”
Section: Li4ti5o12 (Lto)mentioning
confidence: 99%
“…Additive-free LTO anodes have also shown enhanced performance, which has been ascribed to an increase in electrical conductivity of lithiated Li4+xTi5O12 phases formed as a result of discharge [124]. Porous [125][126][127][128] and hollow sphere [129,130] morphologies of LTO have displayed also superior performance as a result of their unique nanostructured form. Mesoporous thin-film electrodes have displayed electrical conductivity close to that of bulk LTO, resulting in appreciable performance [125].…”
Section: Li4ti5o12 (Lto)mentioning
confidence: 99%
“…Unfortunately, as LTO particle size decreases to the nanoscale, the specific surface area of the materials increased greatly, which significantly introduces irreversible reactions with the electrolyte solution 26, 27. Furthermore, nanostructured materials suffer from a very low tap density leading to a low volumetric energy density 28, 29. For electrodes with a high tap density, the Li‐ion transport throughout the electrodes has been shown to limit the capacity at high (dis)charge rates 30, 31.…”
Section: Introductionmentioning
confidence: 99%
“…This probably benefits the electrochemical performance, since nitrogen doping has been reported to facilitate the electronic conductivity of the carbon layer and the charge transfer at the interface. 31 The rigidity of the thin carbon coating allows it to form a self-supporting shell outside the SiNP core ( Figure 2A,B) after the removal of the SiO 2 sacrificial layer. Some carbon shells contain more than one SiNP, which is due to slight aggregation during SiO 2 coating or polydopamine coating.…”
mentioning
confidence: 99%