节点文献
脉冲电沉积Ni-P合金析氢电极的研究
Study of Ni-P alloy prepared by pulse current electrodeposition for hydrogen evolution
【Author】 Yong-Cao Feng1,2, Zi-Dong Wei*1,2, Yong Liu2, Si-Guo Chen2 and Cai-Xin Sun1 1The Key Laboratory of High Voltage Engineering & Electrical New Technology, Ministry of Education, College of Electrical Engineering, Chongqing University, 400044 Chongqing 2College of Chemistry and Chemical Engineering, Chongqing University, 400044 Chongqing
【机构】 重庆大学电气工程学院高电压与电工新技术教育部重点实验室; 重庆大学化学化工学院;
【摘要】 研究了双脉冲电沉积法制备Ni-P阴极的工艺,以及在这些电极上析氢的催化活性。实验结果表明:在合适的脉冲参数下,用双脉冲电沉积法制备的Ni-P合金电极比用直流电沉积法制备的有更高的析氢催化活性;通过改变电沉积参数,制备了磷含量在5.8-10.0wt%的各种电极,其中磷含量在6.0wt%左右的Ni-P合金电极具有优良的析氢催化性能,采用EDXRF、XRD及SEM方法研究了Ni-P合金镀层的成分和组织结构,探讨了Ni-P合金电极的催化析氢活性与其组织结构的关系。
【Abstract】 The influence of parameters of a dual-pulses current, i.e., two group of pulse current with different height and width, for electrodeposition of Ni-P alloy on the catalytic activity to hydrogen evolution in alkaline solution was investigated. The results showed that the Ni-P alloy electrode prepared by the dual-pulses current method displayed a better catalysis to hydrogen evolution than those by the direct current method. The Ni-P alloys with P content from 5.8 to 10.0 wt% were fabricated by means of changing deposition technique. It was found that the alloy with P content of 6.0 wt% exhibited the best catalysis to hydrogen evolution in all investigated alloys. The P content in the alloy, however, is not the only factor to cause the difference in catalysis to hydrogen evolution. The difference in surface configuration of the alloy probably plays a more important role in catalysis to hydrogen evolution because the alloy with almost same P content displays a quite different catalysis to hydrogen evolution.
- 【会议录名称】 中国化学会第二十五届学术年会论文摘要集(上册)
- 【会议名称】中国化学会第二十五届学术年会
- 【会议时间】2006-07
- 【会议地点】中国吉林长春
- 【分类号】O646
- 【主办单位】中国化学会