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Phosphorene quantum dot electronic properties and gas sensing

机译:磷烯量子点电子性能和气体传感

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摘要

Density functional theory calculations are performed on phosphorene quantum dots having different shapes and edge terminations to investigate their structure stability, electronic properties, and gas sensing ability. All the selected phosphorene dots, namely hexagonal and triangular flakes with armchair and zigzag terminations, have positive binding energies which insure their stability even though the bond lengths are much longer than those in the infinite phosphorene layer. It is found that all the selected hydrogen passivated quantum dots have a wide energy gap. In contrast, the partial passivation with sulfur decreases the gap. Moreover, it transforms the system from antiferromagnetic to ferromagnetic state. The energy gap of hexagonal zigzag cluster can be additionally tuned by electric field: narrowed by about 1.7 eV for hydrogenated or broadened by 0.25 eV for partially sulfurated edges. It is shown that phosphorene quantum dots successfully adsorb H2S, CH4, CO, NH3 gas molecules either on their edge or surface. The highest adsorption energy is obtained for NH3 molecule, when it is placed over the surface. This adsorption is alleviated by in-plane electric field and hindered by perpendicular field.
机译:密度函数理论计算对具有不同形状和边缘终端的磷烯量子点进行,以研究它们的结构稳定性,电子性能和气体传感能力。所有选定的磷烯点,即六边形和三角形薄片,带有扶手椅和锯齿形终端,具有正粘合能量,即使粘合长度远比无限磷烯层中的粘合长度长得多。发现所有选定的氢钝化量子点具有宽的能隙。相反,硫的部分钝化降低了间隙。此外,它将系统转变为铁磁状态的反铁磁性。六角形曲折簇的能隙可以通过电场另外调整:缩小约1.7eV用于氢化或较宽为部分硫酸化边缘。结果表明,磷烯量子点在其边缘或表面上成功地吸附了H 2 S,CH 4,CO,NH 3气体分子。当其放置在表面上时,对于NH 3分子获得最高吸附能量。在平面内电场缓解了这种吸附并由垂直场阻碍。

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