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NiCu双金属电极电催化析氢 被引量:4

Electrocatalytic Hydrogen Evolution of NiCu Double Metal Electrodes
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摘要 采用恒电流共沉积方法制备了具有纳米结构的NiCu双金属电极。采用线性扫描、塔菲尔曲线、电流时间曲线及电化学阻抗谱对NiCu双金属电极电催化析氢的性能进行了测试;并且还利用X射线衍射(XRD)、扫描电子显微镜(SEM)和循环伏安测试手段对其组成、相结构和表面形貌进行了表征和分析。实验结果表明,NiCu双金属电极的电催化析氢性能明显优于Ni电极或Cu电极,这可能与Cu和Ni的协同作用有关。在所研究的NiCu双金属电极中,NiCu0.04具有较好的电化学析氢活性,这主要与其电化学反应电阻较小和比表面积较大有关。 The NiCu double metal nanostructure electrodes were prepared by constant current codeposition method. The performance for electrocatalytic hydrogen evolution of the NiCu double metal electrodes was tested by linear scanning, Tafel curve, current-time curve and electrochemical impedance spectrum. The composition, phase structure and surface morphology of the NiCu double metal electrodes were characterized by X-ray diffraction (XRD), scanning electron micro scope (SEM) and cyclic voltammetric method. The results show that the electrocatalytic hydro- gen evolution performance of the NiCu double metal is better than that of the Ni or Cu electrode, which can probably be attributed to the synergistic effect of Ni and Cu. Among the researched NiCu double metal electrodes, NiCu0.04 electrode has the better electrochemical activity for hydrogen evolution, which is mainly due to its smaller electrochemical reaction resistance and larger specific surface area.
出处 《微纳电子技术》 CAS 北大核心 2012年第3期192-196,212,共6页 Micronanoelectronic Technology
基金 湖北省教育厅青年基金资助项目(Q20102903) 湖北省自然科学基金资助项目(2009CDB010) 黄冈师范学院大学生创新实验(sy200114)
关键词 析氢 催化活性 电沉积 NiCu电极 合金电极 电催化 hydrogen evolution catalytic activity electrodeposition NiCu electrode~ alloy elec-trode ~ electrocatalysis
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  • 1GIZ M J,BENTO S C,GONZALEZ E R.NiFeZn codepositas a cathode material for the production of hydrogen by waterelectrolysis[J].Int J Hydrogen Energy,2000,25(7):621-625. 被引量:1
  • 2杨富国,方正,吴振玉,朱琼霞.电沉积钯镍合金的组成与性能[J].材料保护,2001,34(9):14-15. 被引量:6
  • 3宋刚祥..水电解电极的研究[D].天津大学,2008:
  • 4GREEN J A S,LEWIS F A.Overboltage component at pal-ladized cathodes of palladium and palladium alloys prior to andduring bubble ebolution[J].Farady Soc,1964,60(15):2234-2743. 被引量:1
  • 5WITHERSOON M C,JOHNSTONE R C,LEWIS F A.Thesteady state hydrogen content catalytically active noble metalcathode during hydrogen bubble evolution at high current den-sities[J].Electrochem Acta,1975,20(6/7):519-521. 被引量:1
  • 6BAI L,HARRINGTON D A,CONWAY B E.Behavior ofoverpotential-deposited species in faradaic reaction,impedancemeasurements on H2evolution kinetics at activated unactibated Ptcathodes[J].Electrochem Acta,1987,32(12):1713-1731. 被引量:1
  • 7SHERVEDANI R K,LASIA A.Kinetics of hydrogen evolu-tion reaction on nickel-zinc-phosphorus electrodes[J].JElectrochem Soc,1997,144(8):2652-2657. 被引量:1
  • 8曲永和,李青莲.金属元素性质与析氢反应电催化活性的关系[J].陕西化工,1994,23(1):30-32. 被引量:9
  • 9YISLLIDA N,YOSSHITAKE M,ENDOH E,et al.De-velopmmt of highly durable low hydrogen over voltage cathodeinchlor-alkali cells[J].Int J Hydrogen Energy,2003,14(2):137-140. 被引量:1
  • 10刘萍,唐致远,宋全生,赵孟,王媛媛.Ni-Mo合金电极的制备条件对其析氢性能的影响[J].电镀与精饰,2006,28(3):11-14. 被引量:12

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