The application of cyclohexyl benzene(CHB)as the overcharge protection additive in lithium ion batteries was analyzed.Through 1C overcharge testing,battery performance testing, electrochemical impedance testing,electr...The application of cyclohexyl benzene(CHB)as the overcharge protection additive in lithium ion batteries was analyzed.Through 1C overcharge testing,battery performance testing, electrochemical impedance testing,electrolyte conductivity and self-discharge testing,the use of cyclohexyl benzene as the overcharge protection additive and the effect of cyclohexyl benzene on battery performance were investigated.The possible mechanism of cyclohexyl benzene as the overcharge protection addtive was discussed.When the content of cyclohexyl benzene was more than 5%(mass),the battery could be protected from explosion.When the content of the cyclohexyl benzene exceeded 7%(mass),a detrimental effect on battery performance was found.Cyclohexyl benzene could also decrease electrolyte conductivity,leading to increased self-discharge.The proper content of cyclohexyl benzene was between 5%(mass) and 7%(mass).展开更多
文摘The application of cyclohexyl benzene(CHB)as the overcharge protection additive in lithium ion batteries was analyzed.Through 1C overcharge testing,battery performance testing, electrochemical impedance testing,electrolyte conductivity and self-discharge testing,the use of cyclohexyl benzene as the overcharge protection additive and the effect of cyclohexyl benzene on battery performance were investigated.The possible mechanism of cyclohexyl benzene as the overcharge protection addtive was discussed.When the content of cyclohexyl benzene was more than 5%(mass),the battery could be protected from explosion.When the content of the cyclohexyl benzene exceeded 7%(mass),a detrimental effect on battery performance was found.Cyclohexyl benzene could also decrease electrolyte conductivity,leading to increased self-discharge.The proper content of cyclohexyl benzene was between 5%(mass) and 7%(mass).