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Nanostructured Nickel Nitride with Reduced Graphene Oxide Composite Bifunctional Electrocatalysts for an Efficient Water-Urea Splitting

机译:纳米结构氮化镍与还原氧化石墨烯复合双功能电催化剂的高效水-尿素分离

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摘要

A three-dimensional nickel nitride with reduced graphene oxide composite on nickel foam (s-X, where s represents Ni N/rGO@NF and the annealing temperature X can be 320, 350, or 380) electrode has been fabricated through a facile method. We demonstrate that s-350 has excellent urea oxidation reaction (UOR) activity, with a demanded potential of 1.342 V to reach 10 mA/cm and bears high hydrogen evolution reaction (HER) activity. It provides a low overpotential of 124 mV at 10 mA/cm , which enables the successful construction of its two-electrode alkaline electrolyzer (s-350||s-350) for water–urea splitting. It merely requires a voltage of 1.518 V to obtain 100 mA/cm and is 0.145 V lower than that of pure water splitting. This noble metal-free bifunctional electrode is regarded as an inexpensive and effective water–urea electrolysis assisted hydrogen production technology, which is commercially viable.
机译:已经通过一种简便的方法制造了在镍泡沫上具有还原的氧化石墨烯复合物的三维氮化镍电极(s-X,其中s代表Ni N / rGO @ NF,退火温度X可以为320、350或380)。我们证明s-350具有出色的尿素氧化反应(UOR)活性,所需的1.342 V电位达到10 mA / cm,并具有很高的析氢反应(HER)活性。它在10 mA / cm时提供124 mV的低过电势,从而能够成功构建用于水-尿素分解的两电极碱性电解槽(s-350 || s-350)。仅需1.518 V的电压即可获得100 mA / cm,比纯水分解的电压低0.145V。这种无贵金属的双功能电极被认为是一种廉价且有效的水-尿素电解辅助制氢技术,具有商业可行性。

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