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Non-noble metal-nitride based electrocatalysts for high-performance alkaline seawater electrolysis

机译:基于非贵金属 - 氮化物的电催化剂,用于高性能碱性海水电解

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摘要

Seawater is one of the most abundant natural resources on our planet. Electrolysis of seawater is not only a promising approach to produce clean hydrogen energy, but also of great significance to seawater desalination. The implementation of seawater electrolysis requires robust and efficient electrocatalysts that can sustain seawater splitting without chloride corrosion, especially for the anode. Here we report a three-dimensional core-shell metal-nitride catalyst consisting of NiFeN nanoparticles uniformly decorated on NiMoN nanorods supported on Ni foam, which serves as an eminently active and durable oxygen evolution reaction catalyst for alkaline seawater electrolysis. Combined with an efficient hydrogen evolution reaction catalyst of NiMoN nanorods, we have achieved the industrially required current densities of 500 and 1000?mA?cmsup-2/sup at record low voltages of 1.608 and 1.709?V, respectively, for overall alkaline seawater splitting at 60?°C. This discovery significantly advances the development of seawater electrolysis for large-scale hydrogen production.
机译:海水是我们星球上最丰富的自然资源之一。海水的电解不仅是产生清洁氢能量的有希望的方法,而且对海水淡化产生具有重要意义。海水电解的实施需要稳健且有效的电催化剂,可以在没有氯化物腐蚀的情况下维持海水分裂,特别是对于阳极。在这里,我们报告了一种三维核 - 壳金属 - 氮化物催化剂,其由均匀地装饰在Ni泡沫上的Nifen纳米棒上均匀地装饰的三维核 - 壳金属 - 氮化物催化剂,其用作碱性和耐用的氧气进化反应催化剂,用于碱性海水电解。结合Nimon Nanorods的有效氢进化反应催化剂,我们已经在1.608和1.709?v的记录低电压下实现了500和1000Ω的工业所需的电流密度为500和1000?ma?cm -2℃。对于60°C的总碱性海水分裂。这一发现显着推动大规模氢气生产海水电解的发展。

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