2015
DOI: 10.1039/c4ta06607c
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Firework-shaped TiO2 microspheres embedded with few-layer MoS2 as an anode material for excellent performance lithium-ion batteries

Abstract: Firework-shaped TiO2 microspheres embedded with few-layer MoS2 are prepared by a novel strategy, and the composite electrode exhibits excellent cycling performance, high capacity and rate capability compared to pure MoS2 and TiO2 electrodes.

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Cited by 107 publications
(55 citation statements)
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“…Due to the high energy surface of TiO 2 , the nanoparticles show a tendency to selfaggregate during the charge-discharge process, and this is the main cause of the decay of the capacity upon cycling [73]. The best results have been obtained with special morphologies that avoid this irregular aggregation: one example is hollow nanostructures composed of nanosized primary building blocks [74].…”
Section: Discussionmentioning
confidence: 72%
“…Due to the high energy surface of TiO 2 , the nanoparticles show a tendency to selfaggregate during the charge-discharge process, and this is the main cause of the decay of the capacity upon cycling [73]. The best results have been obtained with special morphologies that avoid this irregular aggregation: one example is hollow nanostructures composed of nanosized primary building blocks [74].…”
Section: Discussionmentioning
confidence: 72%
“…To address these issues, rechargeable sodium-ion batteries (NIBs) are proposed as a potential candidate for large-scale energy storage due to the natural abundance and lower cost of sodium 7,8 . For the NIB anode materials, much effort has been focused on low-voltage metal oxide anodes, among which, TiO 2 has attracted considerable attention 2,[9][10][11][12][13] due to its low operation voltage, high capacity, nontoxicity, and low production cost.…”
Section: Introductionmentioning
confidence: 99%
“…Besides the 3D architectures of MoS 2 with carbonaceous materials, recently 3D networks of MoS 2 have also been prepared with TiO 2 microspheres to enhance the electrochemical performance of LIBs [86]. For instance, a firework shaped TiO 2 (3D F-TiO 2 ) microspheres have been used as template, in which 3D F-TiO 2 microspheres were embedded with MoS 2 NSs by two step hydrothermal methods [86].…”
Section: D Porous Structures With 2d Graphene/porous Cnfmentioning
confidence: 99%
“…For instance, a firework shaped TiO 2 (3D F-TiO 2 ) microspheres have been used as template, in which 3D F-TiO 2 microspheres were embedded with MoS 2 NSs by two step hydrothermal methods [86].…”
Section: D Porous Structures With 2d Graphene/porous Cnfmentioning
confidence: 99%