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Bottom-up formation of robust gold carbide

机译:自底向上形成坚固的碳化金

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摘要

A new phenomenon of structural reorganization is discovered and characterized for a gold-carbon system by in-situ atomic-resolution imaging at temperatures up to 1300 K. Here, a graphene sheet serves in three ways, as a quasi transparent substrate for aberration-corrected high-resolution transmission electron microscopy, as an in-situ heater, and as carbon supplier. The sheet has been decorated with gold nanoislands beforehand. During electron irradiation at 80 kV and at elevated temperatures, the accumulation of gold atoms has been observed on defective graphene sites or edges as well as at the facets of gold nanocrystals. Both resulted in clustering, forming unusual crystalline structures. Their lattice parameters and surface termination differ significantly from standard gold nanocrystals. The experimental data, supported by electron energy loss spectroscopy and density-functional theory calculations, suggests that isolated gold and carbon atoms form – under conditions of heat and electron irradiation – a novel type of compound crystal, Au-C in zincblende structure. The novel material is metastable, but surprisingly robust, even under annealing condition.
机译:通过在高达1300 K的温度下进行原位原子分辨率成像,发现并表征了金-碳系统的一种新的结构重组现象。此处,石墨烯片可作为三种方式用作准透明基板,用于像差校正。高分辨率透射电子显微镜,原位加热器和碳供应商。床单已经预先用纳米金装饰。在80 kV和高温下的电子辐照过程中,已观察到金原子在有缺陷的石墨烯位点或边缘以及金纳米晶体的晶面上积累。两者均导致聚集,形成异常的晶体结构。它们的晶格参数和表面终止与标准金纳米晶体有显着差异。由电子能量损失谱和密度泛函理论计算支持的实验数据表明,在热和电子辐射的条件下,孤立的金和碳原子形成了一种新型的复合晶体,即闪锌矿结构的Au-C。这种新型材料即使在退火条件下也具有亚稳态,但出奇的坚固。

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