Liu等。 报道了碳纳米基碳基于氧化碳(LICOO 2)的阴极,其特异性c c含量为90 mA H g -1。 19然而,碳纳米ber不仅被用作添加剂而不是当前的收集器,而且还需要缓慢的干燥铸造过程来去除增塑剂(丙烯碳酸盐)。 最近,已经研究了通过电泳沉积(EPD)和高压灭菌方法将阴极材料涂在CFS上,以用于结构电池中。 11,23,24 Hagberg等。 reported that LiFePO 4 coated onto polyacrylonitrile (PAN)-based CFs tow via EPD method delivers a speci c capacity of 108 mA h g − 1 at 0.1 C. 11 However, the coating performance was dependent on the distance between Pt wire (counter electrode) and CFs (working electrode) at EPD instrumental set-up, making it di ffi cult to obtain a high yield.Liu等。报道了碳纳米基碳基于氧化碳(LICOO 2)的阴极,其特异性c c含量为90 mA H g -1。19然而,碳纳米ber不仅被用作添加剂而不是当前的收集器,而且还需要缓慢的干燥铸造过程来去除增塑剂(丙烯碳酸盐)。最近,已经研究了通过电泳沉积(EPD)和高压灭菌方法将阴极材料涂在CFS上,以用于结构电池中。11,23,24 Hagberg等。 reported that LiFePO 4 coated onto polyacrylonitrile (PAN)-based CFs tow via EPD method delivers a speci c capacity of 108 mA h g − 1 at 0.1 C. 11 However, the coating performance was dependent on the distance between Pt wire (counter electrode) and CFs (working electrode) at EPD instrumental set-up, making it di ffi cult to obtain a high yield.11,23,24 Hagberg等。reported that LiFePO 4 coated onto polyacrylonitrile (PAN)-based CFs tow via EPD method delivers a speci c capacity of 108 mA h g − 1 at 0.1 C. 11 However, the coating performance was dependent on the distance between Pt wire (counter electrode) and CFs (working electrode) at EPD instrumental set-up, making it di ffi cult to obtain a high yield.
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