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首页> 外文期刊>ACS nano >Unveiling the Mechanisms Leading to H-2 Production Promoted by Water Decomposition on Epitaxial Graphene at Room Temperature
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Unveiling the Mechanisms Leading to H-2 Production Promoted by Water Decomposition on Epitaxial Graphene at Room Temperature

机译:揭示了室温下外延石墨烯上水分解促进H-2产生的机理

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摘要

By means of a combination of surface-science spectroscopies and theory, we investigate the mechanisms ruling the catalytic role of epitaxial graphene (Gr) grown on transition-metal substrates for the production of hydrogen from water. Water decomposition at the Gr/metal interface at room temperature provides a hydrogenated Gr sheet, which is buckled and decoupled from the metal substrate. We evaluate the performance of Gr/metal interface as a hydrogen storage medium, with a storage density in the Gr sheet comparable with state-of-the-art materials (1.42 wt %). Moreover, thermal programmed reaction experiments show that molecular hydrogen can be released upon heating the water-exposed Gr/metal interface above 400 K. The Gr hydro/dehydrogenation process might be exploited for an effective and eco-friendly device to produce (and store) hydrogen from water, i.e., starting from an almost unlimited source.
机译:通过结合表面科学光谱学和理论,我们研究了决定在过渡金属基质上生长的外延石墨烯(Gr)的催化作用的机理,该外延石墨烯可从水中生产氢。在室温下,Gr /金属界面处的水分解会提供氢化的Gr板,该板会弯曲并与金属基材分离。我们评估了Gr /金属界面作为储氢介质的性能,其在Gr薄板上的储藏密度可与最新材料(1.42 wt%)相比。此外,热程序反应实验表明,将暴露于水的Gr /金属界面加热到400 K以上时,可以释放出分子氢。Gr的加氢/脱氢工艺可以用于生产和存储有效且环保的设备来自水的氢,即从几乎无限的来源开始。

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