期刊文献+

Electrochemical behavior of Pd(Ⅱ) and Rh(Ⅲ) in [EMIm]NTf_2 ionic liquid

Electrochemical behavior of Pd(Ⅱ) and Rh(Ⅲ) in [EMIm]NTf_2 ionic liquid
下载PDF
导出
摘要 The electrochemical behavior of Pd(Ⅱ) and Rh(Ⅲ) in [EMIm]NTf2ionic liquid has been studied on Pt working electrodes at 298 K by cyclic voltammetry(CV), polarization curve and galvanostatic transient techniques.Cyclic voltammogram of Pd(II) in [EMIm]NTf2consists of two cathodic current peaks located at 1.37 V(E pc2),corresponding to Pd2+/Pd+, and at 0.69 V(E pc1) corresponding to Pd+/Pd. The transfer coefficient α was calculated by the Tafel extrapolation from the polarization curves to be 0.306, which is in agreement with the value reported in an aqueous solution system. For Rh(Ⅲ) in [EMIm]NTf2, a cathodic current peak(E pc) was observed at-0.39 V, corresponding to Rh3+/Rh, and two oxidation peaks were observed at-0.13 V(E pa1) and0.37 V(E pa2) during the reverse scan. A significantly negative shift in the cathodic peak potential was observed with the increase of the scan rate, indicating that the reduction of Pd(II) and Rh(Ⅲ) on the Pt electrode involves kinetic complications. By using the galvanostatic transient technique, the diffusion coefficients of Pd(II) and Rh(Ⅲ) in [EMIm]NTf2ionic liquid solution were found to be ~ 10-7cm2/s. The potential difference between the reduction of Pd(II) to Pd and the reduction of Rh(Ⅲ) to Rh obtained from the CV curves of the Pd(II) and Rh(Ⅲ) co-existing [EMIm]NTf2solution is found to be about 0.74 V, which makes it possible to electrodeposit Pd(II) and Rh(Ⅲ) separately. The electrochemical behavior of Pd(II) and Rh(III) in [EMIm]NTf2 ionic liquid has been studied on Pt work- ing electrodes at 298 K by cyclic voltammetry (CV), polarization curve and galvanostatic transient techniques. Cyclic voltammogram of Pd(II) in [EMIm]NTf2 consists of two cathodic current peaks located at 1.37 V(Epc2), corresponding to pd2+/pd+, and at 0.69 V (Epd) corresponding to Pd+/Pd. The transfer coefficient α was calculated by the Tafel extrapolation from the polarization curves to be 0.306, which is in agreement with the value reported in an aqueous solution system. For Rh(III) in [EMIm]NTf2, a cathodic current peak (Epc) was observed at -0.39 V, corresponding to Rh3+/Rh, and two oxidation peaks were observed at -0.13 V (Epa1) and 0.37 V (Epa2) during the reverse scan. A significantly negative shift in the cathodic peak potential was observed with the increase of the scan rate, indicating that the reduction of Pd(II) and Rh(III) on the Pt electrode involves kinetic complications. By using the galvanostatic transient technique, the diffusion coefficients of Pd(II) and Rh(III) in [EMIm]NTf2 ionic liquid solution were found to be - 10-7 cm2/s. The potential difference between the reduction of Pd(II) to Pd and the reduction of Rh(III) to Rh obtained from the CV curves of the Pd(II) and Rh(III) co-existing [EMIm]NTf2 solution is found to be about 0.74 V, which makes it possible to electrodeposit Pd(II) and Rh(III) separately.
出处 《Nuclear Science and Techniques》 SCIE CAS CSCD 2015年第1期93-97,共5页 核技术(英文)
基金 Supported by the National Natural Science Foundation of China(Nos.91026019 and 91126006)
关键词 钯(Ⅱ) 电化学行为 离子液体 III RH 极化曲线 溶液系统 循环伏安 Ionic liquids, Cyclic voltammogram, Palladium, Rhodium
  • 相关文献

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部