个人信息Personal Information
副教授
博士生导师
硕士生导师
性别:男
毕业院校:天津大学
学位:博士
所在单位:机械工程学院
学科:测试计量技术及仪器. 精密仪器及机械
办公地点:机械知方楼6128
联系方式:0411-84707713
电子邮箱:ren_tq@dlut.edu.cn
Electrohydrodynamic jet printing and a preliminary electrochemistry test of graphene micro-scale electrodes
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论文类型:期刊论文
发表时间:2016-04-01
发表刊物:JOURNAL OF MICROMECHANICS AND MICROENGINEERING
收录刊物:SCIE、EI
卷号:26
期号:4
ISSN号:0960-1317
关键字:electrohydrodynamic jet; printing; graphene; electrochemistry test
摘要:This paper reports the use of electrohydrodynamic jet (E-jet) printing technique for producing a wide range of graphene micro-scale structures. Ethyl cellulose-dispersed graphene ink and Nafion-dispersed graphene ink were prepared and used for E-Jet printing. A glass slide and PDMS substrate were used for E-Jet printing of graphene ink. The E-jet printed graphene micro-scale structures using ethyl cellulose-dispersed graphene ink presented a feature of center arrayed graphene surrounded by the track of evaporated solution. However, the E-Jet printed graphene structures using Nafion-dispersed graphene ink exhibited uniform arranged features. It was observed that the resistivity of the graphene structures printed from the ethyl cellulose-dispersed graphene ink was much lower than that from the Nafion-dispersed graphene ink. In addition, the graphene micro-scale electrodes were E-Jet printed for preliminary electrochemical applications. The results showed that the graphene micro-scale electrodes had a distinct response for the lead ion. Furthermore, a Pt/graphene composite electrode was formed and an electrochemistry test was conducted. It was found that the Pt/ graphene composite electrode had a more sensitive response compared with the pure Pt electrode for electrochemical sensing.