Research progress in DMcT based cathode materials for Li-ion batteries 锂离子电池正极材料二巯基噻二唑的研究进展
The results indicated that the redox reaction of DMcT/ PAn was accelerated, the discharge specific capacity and the cycle stability of DMcT/ PAn could be improved by doping CuC_2O_4. 研究结果表明:掺杂草酸铜加快了DMcT/PAn复合材料的氧化还原反应,提高了复合材料的放电比容量,改善了循环性能。
Electrochemical properties of DMcT/ PAn composite doped CuC_2O_4 草酸铜掺杂DMcT/PAn复合材料电化学性能
Electrochemical properties of DMcT/ PAn with powder microelectrodes 粉末微电极方法研究DMcT/PAn的电化学性能
Through these modifications, the discharge capacity, cathode currents and cyclic life of DMcT were improved. 通过这些改性,DMcT的放电容量、正极电流、循环寿命都得到了改善。
Electrochemical Properties of PAn/ DMcT Compound Film Cathode PAn/DMcT复合膜电极的电化学性能
However, only the composite material of blended PAn/ DMcT could have a high theoretical specific capacity of about 224 mAh/ g. There is, therefore, much room for the improvement of these types of composite cathode materials. 然而,这类活性物质的比容量都不高,已见文献报道的只有分子级别混合的PAn/DMcT活性物质具有较高的理论比容量(约224mAh/g)。