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A vertically aligned carbon nanotube/fiber based electrode for economic hydrogen production by water electrolysis

机译:垂直排列的碳纳米管/纤维基电极,可通过水电解经济地制氢

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Electrolysis is the most mature form of hydrogen production. Unfortunately, water electrolysis has not yet achieved the efficiency and the cost levels required for any practical application. In order to enhance the current density, modification of the electrolyte and the electrode morphology are the most popular approaches. Recently there have been numerous reports on how to improve the efficiency of hydrogen production by water splitting [1–3]. On the electrode side, the use of non-platinum high efficiency electrode materials for water splitting will provide a promising future for the hydrogen economy. An ideal electrode for water electrolysis should have good permeability to water and gas. It should also offer good electrical properties with a long life. A porous graphite plate, when coated with titania, for example, is known to provide a simple and economical electrode for water electrolysis [4].
机译:电解是制氢最成熟的形式。不幸的是,水电解尚未达到任何实际应用所需的效率和成本水平。为了提高电流密度,电解质的改性和电极形态是最流行的方法。最近,有许多关于如何通过水分解提高制氢效率的报道[1-3]。在电极方面,使用非铂高效电极材料进行水分解将为氢经济提供有希望的未来。用于水电解的理想电极应该对水和气体具有良好的渗透性。它还应具有长寿命的良好电性能。例如,已知多孔石墨板涂有二氧化钛后,可提供一种简单而经济的水电解电极[4]。

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