蓄电池
蓄電池
축전지
CHINESE LABAT MAN
2015年
1期
18-22
,共5页
何文祥%陈清元%代飞%茆佳颖%高根芳
何文祥%陳清元%代飛%茆佳穎%高根芳
하문상%진청원%대비%묘가영%고근방
1-乙基-3-甲基咪唑三氟甲磺酸盐%添加剂%离子液体%析氢过电位%铅酸蓄电池
1-乙基-3-甲基咪唑三氟甲磺痠鹽%添加劑%離子液體%析氫過電位%鉛痠蓄電池
1-을기-3-갑기미서삼불갑광산염%첨가제%리자액체%석경과전위%연산축전지
1-ethyl-3-methylimadozolium trifluoromethanesulfonate%additive%ionic liquid%over-potential of hydrogen evolution%lead-acid battery
本文选用具有表面活性作用的咪唑类离子液体1-乙基-3-甲基咪唑三氟甲磺酸盐([emim]O T f)作为电解液添加剂。运用循环伏安法、线性扫描伏安法、扫描显微镜法和充放电循环等表征方法,考查了添加不同含量的[emim]OTf添加剂对析氢过电位和电池循环寿命的影响。结果表明,[emim]OTf的添加能够提高析氢过电位,起到抑制析氢的作用。其较低的表面张力和高的表面活性,能够吸附在活性物质颗粒表面,提高了晶体的成核率,有效地抑制了PbSO4颗粒的增大和不可逆硫酸盐化,提高了电池的循环寿命。当[emim]O T f的添加量为占活性物质质量分数的0.2%时,电池寿命提高约10.7%。
本文選用具有錶麵活性作用的咪唑類離子液體1-乙基-3-甲基咪唑三氟甲磺痠鹽([emim]O T f)作為電解液添加劑。運用循環伏安法、線性掃描伏安法、掃描顯微鏡法和充放電循環等錶徵方法,攷查瞭添加不同含量的[emim]OTf添加劑對析氫過電位和電池循環壽命的影響。結果錶明,[emim]OTf的添加能夠提高析氫過電位,起到抑製析氫的作用。其較低的錶麵張力和高的錶麵活性,能夠吸附在活性物質顆粒錶麵,提高瞭晶體的成覈率,有效地抑製瞭PbSO4顆粒的增大和不可逆硫痠鹽化,提高瞭電池的循環壽命。噹[emim]O T f的添加量為佔活性物質質量分數的0.2%時,電池壽命提高約10.7%。
본문선용구유표면활성작용적미서류리자액체1-을기-3-갑기미서삼불갑광산염([emim]O T f)작위전해액첨가제。운용순배복안법、선성소묘복안법、소묘현미경법화충방전순배등표정방법,고사료첨가불동함량적[emim]OTf첨가제대석경과전위화전지순배수명적영향。결과표명,[emim]OTf적첨가능구제고석경과전위,기도억제석경적작용。기교저적표면장력화고적표면활성,능구흡부재활성물질과립표면,제고료정체적성핵솔,유효지억제료PbSO4과립적증대화불가역류산염화,제고료전지적순배수명。당[emim]O T f적첨가량위점활성물질질량분수적0.2%시,전지수명제고약10.7%。
Ionic liquid of 1-ethyl-3-methylimadozolium trifluoromethanesulfonate ([emim]OTf) was selected as additive of electrolyte to improve the electrochemical properties of lead-acid battery. The effects of different content of [emim]OTf on the over-potential of hydrogen evolution and cycle life of battery were characterized by cyclic voltammetry, linear sweep voltammetry, scanning and transmission electron microscopy, charge–discharge test, cyclic voltammetry, and electrochemical impedance spectroscopy, respectively. The results show the addition of [emim]OTf can reduce the volume of evolved hydrogen by increasing the over-potential of hydrogen evolution. The surface of active particle can be absorbed by [emim]OTf because of its low surface tension and high surface activity, resulting improving the nucleation rate of crystal, restringing the size of PbSO4 particles and sulfation. The cycle life of battery was improved signiifcantly using [emim]OTf as additive of electrolyte. The result shows that the cycle life can be improved by 10.7 % when the amount of [emim]OTf reached 0.2 wt% of active material.