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Sn-based materials are one promising high-capacity anode material for lithium-ion batteries. The practical application of Sn-based materials is generally restricted by their significant capacity fading due to the volume expansion and structural changes during Sn alloying/dealloying process. In this work, Sn-SnO 2 hybrid nanoclusters are embedded into carbon nanotube network, forming a Sn-SnO 2 @CNT...
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