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首页> 外文期刊>Angewandte Chemie >A Two-Dimensional Zirconium Carbide by Selective Etching of Al3C3 from Nanolaminated Zr3Al3C5
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A Two-Dimensional Zirconium Carbide by Selective Etching of Al3C3 from Nanolaminated Zr3Al3C5

机译:纳米层积Zr3Al3C5选择性刻蚀Al3C3的二维碳化锆

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摘要

The room-temperature synthesis of a new two-dimensional (2D) zirconium-containing carbide, Zr3C2Tz MXene is presented. In contrast to traditional preparation of MXene, the layered ternary Zr3Al3C5 material instead of MAX phases is used as source under hydrofluoric acid treatment. The structural, mechanical, and electronic properties of the synthesized 2D carbide are investigated, combined with first-principles density functional calculations. A comparative study on the structrual stability of our obtained 2D Zr3C2Tz and Ti3C2Tz MXenes at elevated temperatures is performed. The obtained 2D Zr3C2Tz exhibits relatively better ability to maintain 2D nature and strucural integrity compared to Ti-based Mxene. The difference in structural stability under high temperature condition is explained by a theoretical investigation on binding energy.
机译:介绍了一种新型的二维(2D)含锆碳化物Zr3C2Tz MXene的室温合成。与传统的MXene制备方法不同,在氢氟酸处理下,使用层状三元Zr3Al3C5代替MAX相作为源。结合第一原理密度函数计算,研究了合成二维碳化物的结构,机械和电子性能。对我们获得的2D Zr3C2Tz和Ti3C2Tz MXene在高温下的结构稳定性进行了比较研究。与基于Ti的Mxene相比,获得的2D Zr3C2Tz表现出相对更好的保持2D性质和结构完整性的能力。结合能的理论研究解释了高温条件下结构稳定性的差异。

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