4.4 Article

Advanced gas-emission anode design for microfluidic fuel cell eliminating bubble accumulation

期刊

出版社

IOP PUBLISHING LTD
DOI: 10.1088/1361-6439/aa89c9

关键词

gas-emission anode; microfluidic fuel cell; bubble accumulation; counter-flow

资金

  1. Research Project of Jiangxi Department of Education, China [GJJ150639]
  2. National Natural Science Foundation of China [51406057]
  3. Research Fund for the Doctoral Program of Higher Education of China [20130074120019]
  4. Hong Kong-Scotland Collaborative Research Partnership [H15009]

向作者/读者索取更多资源

A microfluidic fuel cell is a low cost, easily fabricated energy device and is considered a promising energy supplier for portable electronics. However, the currently developed microfluidic fuel cells that are fed with hydrocarbon fuels are confronted with a bubble problem especially when operating at high current density conditions. In this work, a gasemission anode is presented to eliminate the gas accumulation at the anode. This gas-emission anode is verified as a valid design for discharging gaseous products, which is especially beneficial for stable operation of microfluidic fuel cells. The electrochemical performance of a counter-flow microfluidic fuel cell equipped with a gas-emission anode was measured. The results indicate that the specific design of the gas-emission anode is essential for reducing the oxygen reduction reaction parasitic effect at the anode. Fuel utilization of 76.4% was achieved at a flow rate of 0.35 mu l min(-1). Current-voltage curves of single electrodes were measured and the parasitic effect at the anode was identified as the main performance limiting factor in the presented anode design.

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