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Cubic PdNP-based air-breathing cathodes integrated in glucose hybrid biofuel cells

机译:立方PdNP-based吸气式的阴极整合在葡萄糖混合生物燃料电池

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摘要

Cubic Pd nanoparticles (PdNPs) were synthesized using ascorbic acid as a reducing agent and were evaluated for the catalytic oxygen reduction reaction. PdNPs were confined with multiwalled carbon nanotube (MWCNT) dispersions to form black suspensions and these inks were dropcast onto glassy carbon electrodes. Different nanoparticle sizes were synthesized and investigated upon oxygen reduction capacities (onset potential and electrocatalytic current densities) under O-2 saturated conditions at varying pH values. Strong evidence of O-2 diffusion limitation was demonstrated. In order to overcome oxygen concentration and diffusion limitations in solution, we used a gas diffusion layer to create a PdNP-based air-breathing cathode, which delivered -1.5 mA cm(-2) at 0.0 V with an onset potential of 0.4 V. This air-breathing cathode was combined with a specially designed phenanthrolinequinone/glucose dehydrogenase-based anode to form a complete glucose/O-2 hybrid bio-fuel cell providing an open circuit voltage of 0.554 V and delivering a maximal power output of 184 +/- 21 mu W cm(-2) at 0.19 V and pH 7.0.
机译:立方钯纳米颗粒(PdNPs)是合成的利用抗坏血酸作为还原剂和催化氧还原的评估的反应。碳纳米管(MWCNT)分散体形成黑色的悬浮液和这些油墨dropcast到玻璃碳电极。大小被合成和研究氧还原能力(潜力和electrocatalytic 0 2下电流密度)饱和条件下在不同的pH值。的证据-扩散限制演示。浓度和扩散限制解决方案中,我们使用一个气体扩散层来创建PdNP-based吸气式阴极,马交付-1.5厘米(2)0.0 V发作0.4 V的潜力。结合是一个特别设计的吗phenanthrolinequinone /葡萄糖dehydrogenase-based阳极,形成一个完整的葡萄糖/ 0 2混合生物燃料电池提供一个开路电压0.554 V和交付一个最大输出功率184 + / - 21亩W厘米(2)pH值为0.19 V和7.0。

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