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A first-principles study of the electronic, structural, and optical properties of CrN and Mo:CrN clusters

机译:CRN和Mo的电子,结构和光学性能的第一原理研究:CRN簇

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CrN, one of the most investigated transition metal nitrides, is noted for its wear, corrosion, and oxidation resistance. It also has many other unique chemical and mechanical properties. In the present study, we conducted a density functional theory (DFT) analysis to probe the structural, electronic, and optical properties of pristine and Mo-doped CrN structures in non-crystalline phases using different combinations in which one or two Cr and/or N atoms were substituted by Mo. This study found that the Cr4Mo2N2 structure was chemically and energetically the most stable species among the six considered clusters (Cr4N4, Cr3Mo2 N-3, Cr4Mo2N2, Cr2Mo2N4, Cr4MoN3, and Cr3MoN4). The DFT-derived electronic structure predicted that the Cr3Mo2N3 and Cr4MoN3 clusters possess magnetic susceptibility. Computed infrared (IR), Raman, and ultraviolet-visible (UV-Vis) analyses indicated that the Cr4N4 and Cr4Mo2N2 clusters were naturally stable. This should enable these clusters to serve as light-harnessing materials for strategic applications in solar selective surfaces.
机译:CRN是最受研究的过渡金属氮化物之一,以其磨损,腐蚀和抗氧化性耐氧化。它还具有许多其他独特的化学和机械性能。在本研究中,我们使用不同组合在非结晶相中探测原始和Mo掺杂CRN结构的结构,电子和光学性质的密度泛函理论(DFT)分析。 N原子被MO取代。该研究发现CR4MO2N2结构在六种考虑的簇中化学和能量最稳定的物种(CR4N4,CR3MO2 N-3,Cr4MO2N2,Cr2MO2N4,Cr4MON3和CR3MON4)。 DFT导出的电子结构预测CR3MO2N3和CR4MON3簇具有磁性敏感性。计算的红外(IR),拉曼和紫外 - 可见(UV-VI)分析表明CR4N4和CR4MO2N2簇自然稳定。这应该使这些簇成为用于太阳能选择性表面的战略应用的光线利用材料。

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