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dc.contributor.author孙洁zh_CN
dc.contributor.author李艳zh_CN
dc.contributor.author冯依玲zh_CN
dc.contributor.author王荣zh_CN
dc.contributor.author吴霞琴zh_CN
dc.contributor.authorSUN Jiezh_CN
dc.contributor.authorLI Yanzh_CN
dc.contributor.authorFENG Yi-lingzh_CN
dc.contributor.authorWANG Rongzh_CN
dc.contributor.authorWU Xia-qinzh_CN
dc.date.accessioned2013-11-18T07:47:07Z
dc.date.available2013-11-18T07:47:07Z
dc.date.issued2010-05-28zh_CN
dc.identifier.citation电化学,2010,16(02):198-201.zh_CN
dc.identifier.issn1006-3471zh_CN
dc.identifier.urihttps://dspace.xmu.edu.cn/handle/2288/58351
dc.description.abstract应用电化学循环伏安法,以银作工作电极研究了水合肼在离子液体BmimPF6中的氧化过程.结果显示,银离子对水合肼的氧化过程具有催化作用,其氧化峰电位0.16V(vs.SCE)电催化反应速率决定步骤为1电子的氧化还原过程.在0~3.4mmol/L肼浓度范围内,催化反应峰电流与肼浓度间具有良好的线性关系.zh_CN
dc.description.abstractIn this work,the electrochemical behaviors of hydrazine at Ag electrode in the room temperature ionic liquid,BmimPF6,were studied by cyclic voltammetry. Results suggested that Ag electrode showed a good catalytic activity towards hydrazine oxidation. The catalytic peak current showed a good linear relationship with the hydrazine concentration in the range of 0 ~ 3. 4 mmol/L. The rate-determining step of the electrocatalytic reaction involved one electron transfer form hydrazine molecule to Ag + ion.zh_CN
dc.language.isozhzh_CN
dc.publisher厦门大学《电化学》编辑部zh_CN
dc.relation.ispartofseries研究论文zh_CN
dc.relation.ispartofseriesArticleszh_CN
dc.source.urihttp://electrochem.xmu.edu.cn/CN/abstract/abstract8437.shtmlzh_CN
dc.subject离子液体zh_CN
dc.subject水合肼zh_CN
dc.subject电催化zh_CN
dc.subjectBmimPF6zh_CN
dc.subjectionic liquidzh_CN
dc.subjecthydrazinezh_CN
dc.subjectelectrocatalytsiszh_CN
dc.subjectBmimPF6zh_CN
dc.title水合肼在BmimPF_6银电极上的电化学行为研究zh_CN
dc.title.alternativeElectrochemical Behaviors of Hydrazine in BmimPF_6 Solution at Ag Electrodezh_CN
dc.typeArticlezh_CN
dc.description.note作者联系地址:上海师范大学生命与环境科学学院;zh_CN
dc.description.noteAuthor's Address: College of Life and Environment Sciences,Shanghai Normal University, Shanghai 200234,Chinazh_CN


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