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Combining photocatalytic hydrogen generation and capsule storage in graphene based sandwich structures

机译:将光催化制氢和胶囊存储结合在石墨烯基夹芯结构中

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摘要

The challenge of safe hydrogen storage has limited the practical application of solar-driven photocatalytic water splitting. It is hard to isolate hydrogen from oxygen products during water splitting to avoid unwanted reverse reaction or explosion. Here we propose a multi-layer structure where a carbon nitride is sandwiched between two graphene sheets modified by different functional groups. First-principles simulations demonstrate that such a system can harvest light and deliver photo-generated holes to the outer graphene-based sheets for water splitting and proton generation. Driven by electrostatic attraction, protons penetrate through graphene to react with electrons on the inner carbon nitride to generate hydrogen molecule. The produced hydrogen is completely isolated and stored with a high-density level within the sandwich, as no molecules could migrate through graphene. The ability of integrating photocatalytic hydrogen generation and safe capsule storage has made the sandwich system an exciting candidate for realistic solar and hydrogen energy utilization.
机译:安全储氢的挑战限制了太阳能驱动的光催化水分解的实际应用。在水分解过程中,很难从氧气产品中分离出氢气,以避免不必要的逆反应或爆炸。在这里,我们提出了一种多层结构,其中将氮化碳夹在被不同官能团改性的两个石墨烯片之间。第一性原理模拟表明,这样的系统可以收集光并将光生空穴传输到外部的石墨烯基薄片上,以进行水分解和质子产生。在静电吸引的驱动下,质子穿过石墨烯,与内部氮化碳上的电子反应生成氢分子。所产生的氢被完全隔离,并以高密度水平存储在三明治中,因为没有分子可以通过石墨烯迁移。集光催化制氢和安全胶囊储存于一体的能力使三明治系统成为实际利用太阳能和氢气的令人兴奋的候选者。

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