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首页> 外文期刊>ACS nano >Extraction of Two-Dimensional Aluminum Alloys from Decagonal Quasicrystals
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Extraction of Two-Dimensional Aluminum Alloys from Decagonal Quasicrystals

机译:二维铝合金从二角形拟拉术中提取

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Atomically thin metallic alloys are receiving increased attention due to their prospective applications as interconnects/contacts in two-dimensional (2D) circuits, sensors, and catalysts, among others. In this work, we demonstrate an easily scalable technique for the synthesis of 2D metallic alloys from their 3D quasicrystalline precursors. We have used aluminum (Al)-based single-phase decagonal quasicrystal Al66Co17Cu17 alloy to extract the corresponding 2D alloy structure. The 2D layered Al alloy possesses 2-fold decagonal quasicrystalline symmetry and consists of two- or three-layer-thick sheets with a lateral dimension of microns. These 2D metallic layers were combined with the atomic layers of tungsten disulfide to form the stacked heterostructures, which is demonstrated to be a stable and efficient catalyst for hydrogen evolution reaction.
机译:原子上薄金属合金由于其前景应用而受到增加的关注,作为二维(2D)电路,传感器和催化剂中的互连/触点等。 在这项工作中,我们展示了一种易于可扩展的技术,用于合成来自其三维拟晶体前体的2D金属合金。 我们已经使用铝(Al)的单相二方形醛静体Al66Co17Cu17合金以提取相应的2D合金结构。 2D层状Al合金具有2倍的双臂式拟晶对称,由具有微米横向尺寸的两个或三层厚的片材组成。 将这些2D金属层与钨硫化物二硫化物的原子层组合以形成堆叠的异质结构,其被证明是氢化反应的稳定和有效的催化剂。

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