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Enhancement of the selectivity of MXenes (M2C, M = Ti, V, Nb, Mo) via oxygen-functionalization: promising materials for gas-sensing and -separation

机译:通过氧官能化提高MxENES(M2C,M = Ti,V,Nb,Mo)的选择性:有希望的气体传感和 - 进行的材料

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摘要

Two-dimensional graphene-like materials, namely MXenes, have been proposed as potential materials for various applications. In this work, the reactivity and selectivity of four MXenes (i.e. M2C (M = Ti, V, Nb, Mo)) and their oxygen-functionalized forms (i.e. O-MXenes or M2CO2) toward gas molecules were investigated by using the plane wave-based Density Functional Theory (DFT) calculations. Small gas molecules, which are commonly found in flue gas streams, are considered herein. Our results demonstrated that MXenes are very reactive. Chemisorption is a predominant process for gas adsorption on MXenes. Simultaneously dissociative adsorption can be observed in most cases. The high reactivity of their non-functionalized surface is attractive for catalytic applications. In contrast, their reactivity is reduced, but the selectivity is improved upon oxygen functionalization. Mo2CO2 and V2CO2 present good selectivity toward NO molecules, while Nb2CO2 and Ti2CO2 show good selectivity toward NH3. The electronic charge properties explain the nature of the substrates and also interactions between them and the adsorbed gases. Our results indicated that O-MXenes are potential materials for gas-separation/capture, -storage, -sensing, etc. Furthermore, their structural stability and SO2-tolerant nature are attractive properties for using them in a wide range of applications. Our finding provides good information to narrow down the choices of materials to be tested in future experimental work.
机译:已经提出了二维石墨烯样材料,即MxENES作为各种应用的潜在材料。在这项工作中,通过使用平面波,研究了四个mxENes的反应性和选择性(即M2C(m = Ti,V,Nb,Mo)和它们的氧官能化形式(即O-mxenes或M2CO2)基于密度泛函理论(DFT)计算。本文认为,在烟道气流中常见的小气体分子。我们的结果表明,MXENE是非常有反应的。化学吸附是气体吸附对mxenes的主要方法。在大多数情况下,可以观察到同时解离吸附。它们的非官能化表面的高反应性对于催化应用是具有吸引力的。相反,它们的反应性降低,但是在氧官能化时选择性改善。 Mo2CO2和V2CO2对没有分子具有良好的选择性,而NB2CO2和Ti2CO2对NH 3显示出良好的选择性。电子电荷特性解释基材的性质,以及它们之间的相互作用和吸附的气体。我们的结果表明,O-MXENES是用于气体分离/捕获, - 术,静脉等的潜在材料。此外,它们的结构稳定性和SO2耐受性是在各种应用中使用它们的有吸引力的性质。我们的发现提供了缩小未来实验工作中要测试的材料选择的良好信息。

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