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Characterization of polymer electrolyte membranes for application of glucose biofuel cell

机译:葡萄糖生物燃料细胞应用聚合物电解质膜的表征

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Nowadays, the interest about the implantable or wearable devices has increased rapidly. Due to these attentions, it becomes greatly important issue to develop long-term powering and recharging of implantable devices through a safe, efficient and convenient way and there have been several developments about power sources for implantable devices such as batteries, nuclear cell, bio-fuel cell, etc. Especially, a glucose fuel cell can be a promising candidate for replacing batteries because it uses glucose attained by body fluids as fuel and shows long-term stability and adequate power density. This paper is focuses on investigating the effects of electrolyte membrane characteristics on the glucose fuel cell. Commercially available Nafion membranes with various different thicknesses were characterized by measuring and analyzing electrical power generation quantitatively. The characterization suggests that thinner Nafion membrane led to better performance (higher peak power, low ohmic loss and low activation loss) than thick one, but too thin membrane shows low performance due to the lack of stability stemming from fabrication failure
机译:如今,对可植入或可穿戴设备的兴趣迅速增加。由于这些关注,通过安全,高效,方便的方式开发可植入设备的长期电力和充电,并且对于诸如电池,核细胞,生物的植入装置的电源有几个发展,这成为了重要的问题。特别是,葡萄糖燃料电池可以是更换电池的有希望的候选者,因为它使用体液作为燃料获得的葡萄糖并显示出长期稳定性和足够的功率密度。本文侧重于研究电解质膜特性对葡萄糖燃料电池的影响。通过定量测量和分析电力发电,表征具有各种不同厚度的市售的Nafion膜。表征表明,较薄的Nafion膜导致比厚的更好的性能(更高的峰值功率,低欧姆损耗和低激活损失),但由于制造失败的稳定性稳定性,薄膜太薄显示出低性能

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