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首页> 外文期刊>SIAM journal on applied dynamical systems >Aluminum Nanocrystals as a Plasmonic Photocatalyst for Hydrogen Dissociation
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Aluminum Nanocrystals as a Plasmonic Photocatalyst for Hydrogen Dissociation

机译:铝纳米晶作为氢解离的等离子体光催化剂

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Hydrogen dissociation is a critical step in many hydrogenation reactions central to industrial chemical production and pollutant removal. This step typically utilizes the favorable band structure of precious metal catalysts like platinum and palladium to achieve high efficiency under mild conditions. Here we demonstrate that aluminum nanocrystals (Al NCs), when illuminated, can be used as a photocatalyst for hydrogen dissociation at room temperature and atmospheric pressure, despite the high activation barrier toward hydrogen adsorption and dissociation. We show that hot electron transfer from Al NCs to the antibonding orbitals of hydrogen molecules facilitates their dissociation. Hot electrons generated from surface plasmon decay and from direct photoexcitation of the interband transitions of Al both contribute to this process. Our results pave the way for the use of aluminum, an earth-abundant, nonprecious metal, for photocatalysis.
机译:氢解离是许多氢化反应的关键步骤,其工业化学生产和污染物去除。 该步骤通常利用铂和钯等贵金属催化剂的有利带结构,以在温和条件下实现高效率。 在这里,我们证明铝纳米晶体(Al NCS)在照射时可以用作室温和大气压在室温和大气压下的光催化剂,尽管氢吸附和解离的高活化屏障。 我们表明,从Al NCS到氢分子的抗抗替代术的热电子转移有助于它们的解离。 从表面等离子体衰减产生的热电子衰减和从Al的基间转换的直接摄影都有助于该过程。 我们的结果为使用铝,一种土壤丰富,非匮乏的金属,为光催化铺平了道路。

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