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Proton-Conducting Graphene Membrane Electrode Assembly for High Performance Hydrogen Fuel Cells

机译:用于高性能氢燃料电池的质子传导石墨烯膜电极组件

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Graphene oxide (GO) contains randomly distributed nonconductive sp~(3)-C domains with planar acidity, making it simultaneously an electrical insulator and a proton conductor. GO’s ability for in-plane and through-plane cationic transport together with its impermeability to molecular fuels projected them as inexpensive and sustainable membranes for proton exchange membrane fuel cells (PEMFCs). Nevertheless, the room-temperature proton transport in bulk GO is at least an order lower than that of the state of the art Nafion membrane, challenging the construction of a practical energy conversion device with the former. We show that the proton flux in GO along the H-bonded network projected outward of the carbon planes can be significantly amplified by thinning the 2D carbon layer stacking of carbon nanosheets in GO. The noticeably higher room-temperature fuel cell performance metrics of a thin-layer GO proton conductor compared to the commercial Nafion membrane with ~410 mW/cm~(2) of peak power at ~1300 mA/cm~(2) of peak current demonstrates distinct progress in the sustainable energy landscape.
机译:石墨烯氧化物(GO)含有具有平面酸度的随机分布的非导电SP〜(3)-C结构域,同时使其同时成为电绝缘体和质子导体。 GO对飞机面内和穿过平面阳离子运输的能力与分子燃料的不渗透率一起将其投影为质子交换膜燃料电池(PEMFC)的廉价和可持续的膜。尽管如此,散装的室温质子输送至少是艺术Nafion膜的状态的顺序,挑战与前者的实用能量转换装置的结构。我们表明,通过稀释碳纳米液堆叠堆叠的2D碳层,可以显着放大沿着H键合网络的质子通量。与峰值电流达1300mA / cm〜(2)的峰值功率为〜410mW / cm〜(2)的商业氮膜,薄层GO质子导体的明显更高的室温燃料电池性能度量。展示了可持续能源景观中的不同进展。

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