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111 oriented gold nanoplatelets on multilayer graphene as visible light photocatalyst for overall water splitting

机译:多层石墨烯上的111种取向金纳米片作为可见光催化剂用于整体水分解

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摘要

Development of renewable fuels from solar light appears as one of the main current challenges in energy science. A plethora of photocatalysts have been investigated to obtain hydrogen and oxygen from water and solar light in the last decades. However, the photon-to-hydrogen molecule conversion is still far from allowing real implementation of solar fuels. Here we show that 111 facet-oriented gold nanoplatelets on multilayer graphene films deposited on quartz is a highly active photocatalyst for simulated sunlight overall water splitting into hydrogen and oxygen in the absence of sacrificial electron donors, achieving hydrogen production rate of 1.2 molH2 per gcomposite per h. This photocatalytic activity arises from the gold preferential orientation and the strong gold–graphene interaction occurring in the composite system.
机译:利用太阳能开发可再生燃料似乎是能源科学当前面临的主要挑战之一。在过去的几十年中,已经研究了多种光催化剂以从水和太阳光中获得氢和氧。但是,光子到氢分子的转化距离允许真正实现太阳能燃料还差得很远。在这里,我们显示了沉积在石英上的多层石墨烯薄膜上的111面取向金纳米片是一种高活性光催化剂,可在没有牺牲电子给体的情况下模拟日光下的全部水分解成氢和氧,实现每g复合材料每产1.2 molH2的产氢量H。这种光催化活性来自复合体系中的金优先取向和强的金-石墨烯相互作用。

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