首页> 外文期刊>Angewandte Chemie >Surfactant-Free Nonaqueous Synthesis of Plasmonic Molybdenum Oxide Nanosheets with Enhanced Catalytic Activity for Hydrogen Generation from Ammonia Borane under Visible Light
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Surfactant-Free Nonaqueous Synthesis of Plasmonic Molybdenum Oxide Nanosheets with Enhanced Catalytic Activity for Hydrogen Generation from Ammonia Borane under Visible Light

机译:无表面活性剂无水合成具有增强催化活性的氨硼烷在可见光下制氢的等离子氧化钼纳米片

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摘要

Plasmonic materials have drawn emerging interest, especially in nontraditional semiconductor nanostructures with earth-abundant elements and low resistive loss. However, the actualization of highly efficient catalysis in plasmonic semiconductor nanostructures is still a challenge, owing to the presence of surface-capping agents in their synthetic procedures. To fulfill this, a facile non-aqueous procedure was employed to prepare well-defined molybdenum oxide nanosheets in the absence of surfactants. The obtained MoO3 nanosheets display intense absorption in a wide range attributed to the localized surface plasmon resonances, which can be tuned from the visible to the near-infrared region. Herein, we demonstrate that such plasmonic semiconductor nanostructures could be used as highly efficient catalysts that dramatically enhance the hydrogen-generation activity of ammonia borane under visible light irradiation.
机译:等离子体材料引起了人们的兴趣,特别是在稀土元素含量高且电阻损耗低的非传统半导体纳米结构中。然而,由于在其合成过程中存在表面封端剂,因此在等离子体半导体纳米结构中实现高效催化仍然是一个挑战。为了实现这一点,在不存在表面活性剂的情况下,采用了一种简便的非水方法来制备轮廓分明的氧化钼纳米片。所获得的MoO3纳米片在很宽的范围内表现出强烈的吸收,这归因于局部表面等离振子共振,可以将其从可见光调整为近红外区域。在本文中,我们证明了这种等离激元半导体纳米结构可以用作高效催化剂,其在可见光照射下显着增强氨硼烷的产氢活性。

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