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Sub‐Nanometer Thick Gold Nanosheets as Highly Efficient Catalysts

机译:亚纳米级厚金纳米片作为高效催化剂

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摘要

2D metal nanomaterials offer exciting prospects in terms of their properties and functions. However, the ambient aqueous synthesis of atomically‐thin, 2D metallic nanomaterials represents a significant challenge. Herein, freestanding and atomically‐thin gold nanosheets with a thickness of only 0.47 nm (two atomic layers thick) are synthesized via a one‐step aqueous approach at 20 °C, using methyl orange as a confining agent. Owing to the high surface‐area‐to‐volume ratio, abundance of unsaturated atoms exposed on the surface and large interfacial areas arising from their ultrathin 2D nature, the as‐prepared Au nanosheets demonstrate excellent catalysis performance in the model reaction of 4‐nitrophenol reduction, and remarkable peroxidase‐mimicking activity, which enables a highly sensitive colorimetric sensing of H O with a detection limit of 0.11 × 10 . This work represents the first fabrication of freestanding 2D gold with a sub‐nanometer thickness, opens up an innovative pathway toward atomically‐thin metal nanomaterials that can serve as model systems for inspiring fundamental advances in materials science, and holds potential across a wide region of applications.
机译:二维金属纳米材料的性质和功能令人振奋。但是,原子级薄的二维金属纳米材料的环境水合成代表了巨大的挑战。在此,使用甲基橙作为限制剂,在20°C下通过一步水法合成了厚度仅为0.47 nm(两原子层厚)的独立式原子薄金纳米片。由于高的表面积/体积比,暴露于表面的大量不饱和原子以及由于其超薄2D性质而产生的大界面区域,所制备的Au纳米片在4-硝基苯酚的模型反应中显示出优异的催化性能。还原,并具有显着的过氧化物酶模拟活性,可实现高灵敏度比色检测HO,检测限为0.11×10 。这项工作代表了首次制造具有亚纳米厚度的独立式2D金,为原子薄金属纳米材料的开发开辟了一条创新途径,可以作为激发材料科学基础发展的模型系统,并在广阔的应用领域保持潜力。应用程序。

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