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The CuCrO 2 –carbon nanotubes (CNTs) nanocomposites synthesized by the in-situ hydrothermal method exhibit excellent specific capacity retention and cyclic performances. Due to the poor conductivity and large volume variation of CuCrO 2 , its discharge capacity only remains 304mAhg –1 (0.2C) after 140 cycles. However, the electrochemical performances of CuCrO 2 anodes...
CuCrO 2 was synthesized by a sol–gel technique. CuCrO 2 anodes with common conductive agents (carbon black or acetylene black) show low discharge capacities. However, the electrochemical performances of CuCrO 2 anodes are improved remarkably after replacing the ordinary conductive agent with carbon nano-tubes (CNTs). The CCO–CNTs anode possesses the 436mAhg −1 (0.2C)...
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