Journal
RSC ADVANCES
Volume 1, Issue 6, Pages 958-960Publisher
ROYAL SOC CHEMISTRY
DOI: 10.1039/c1ra00429h
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Funding
- National Basic Research Program of China [2007CB209700]
- Natural Science Foundation of China [21006063, 21073120]
- Science and Technology Commission of Shanghai Municipality [10DZ1202702]
- Australian DEST Inter. Linkage Aust.-China program
- ARC [DP0877348]
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A novel bath lily-like graphene sheet-wrapped nano-Si composite synthesized via a simple spray drying process exhibits a high reversible capacity of 1525 mAh g(-1) and superior cycling stability, which could be attributed to a synergistic effect between highly conductive graphene sheets and active nanoparticles in the open nano/micro-structure.
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