Journal
NANOSCALE
Volume 6, Issue 9, Pages 4508-4512Publisher
ROYAL SOC CHEMISTRY
DOI: 10.1039/c4nr00064a
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Funding
- National Research Foundation of Korea (NRF) grant - Korea government (MEST) [2012R1A2A2A02046367]
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Yolk-shell MoS2 powders with a distinct configuration of MoS2@ void@ MoS2 were prepared for the first time by applying spray pyrolysis. The yolk-shell MoO3 powders prepared by spray pyrolysis were converted into MoS2 powders by a simple sulfidation process at 400 degrees C without altering the morphology. Dense structured MoS2 powders were also prepared by a similar process. The respective initial discharge capacities of the yolk-shell and dense structured MoS2 powders at a current density of 1000 mA g (1) were 651 and 490 mA h g (1), and the corresponding capacity retentions after 100 cycles measured form the second cycle were 100 and 72%.
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