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Design, fabrication and performance of a mixed-reactant membraneless micro direct methanol fuel cell stack

机译:混合反应器无膜微直接甲醇燃料电池堆的设计,制造和性能

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摘要

In the present work, we report the design, fabrication and evaluation of a membraneless mixed-reactant and air breathing microfluidic direct methanol fuel cell (ML-mu DMFC) stack operated in passive mode. The operation under mixed-reactant conditions was achieved by using a highly methanol-tolerant Ag/Pt/CP cathode with ultra low Pt loading in alkaline medium. Prior to the fabrication of the stack, a flow simulation was made in order to study the behavior of the reactants stream in the microchannel through the 2 cells. Subsequently, the device was tested in passive mode using a mixture of 5 M MeOH + 0.5 M KOH. The results showed that by connecting the 2 cells in series, it is possible to effectively double the voltage of a single ML-mu DMFC, as well as increasing the absolute power by 75% with practically no cost increase. The stack was capable of operate continuously for more than 2 h with a single charge of 40 mu L, producing an OCV of 0.89 V and a maximum power density of 3.33 mW mg(pt)(-1). Additionally, the device exhibited good stability throughout a 10 h test.
机译:在目前的工作中,我们报告了在被动模式下运行的无膜混合反应物和空气呼吸微流直接甲醇燃料电池(ML-mu DMFC)的设计,制造和评估。通过使用高度耐甲醇的Ag / Pt / CP阴极和在碱性介质中具有超低Pt负载的阴极,可以在混合反应条件下进行操作。在制造电池堆之前,进行了流动模拟,以研究通过2个电池的微通道中反应物流的行为。随后,使用5 M MeOH + 0.5 M KOH的混合物在被动模式下测试该设备。结果表明,通过串联连接2个电池,可以有效地将单个ML-mu DMFC的电压加倍,并且可以将绝对功率提高75%,而实际上不会增加​​成本。电池堆一次充电40μL即可连续运行2小时以上,产生OCV为0.89 V,最大功率密度为3.33 mW mg(pt)(-1)。此外,该器件在整个10小时的测试中均表现出良好的稳定性。

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