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首页> 外文期刊>Nanotechnology >Two-dimensional graphitic carbon nitride (g-C4N3) for superior selectivity of multiple toxic gases (CO, NO2, and NH3)
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Two-dimensional graphitic carbon nitride (g-C4N3) for superior selectivity of multiple toxic gases (CO, NO2, and NH3)

机译:用于多种有毒气体的优异选择性的二维石墨碳氮化物(G-C4N3)(CO,NO2和NH3)

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Using first principles calculations, we investigated the possibility of selecting multiple toxic gases using one substrate material. Here, we explored the transport property of H-2, N-2, O-2, CO, CO2, NO2, and NH3 gas molecules on two-dimensional graphitic carbon nitride (2D g-C4N3). The homonuclear molecule such as H-2, N-2, and O-2 has very weak adsorption energy (equal to or less than 0.1 eV) and also CO2 has an adsorption energy of 0.23 eV. In the typical toxic gas molecule adsorption systems, we found an appreciable charge transfer. In CO and NH3 adsorption systems, the charge transfer of 0.397 and 0.418 electrons from the molecule to the substrate was found, while the NO2 molecule gained 0.124 electrons from the substrate. Due to this large amount of charge transfer, we obtained large adsorption energies of 4.57, 1.29, and 1.93 eV in CO, NO2, and NH3 systems. Moreover, through the I-V curve calculations, we found large difference in the current. The calculated current was 21, 13.11, and 16.16 mu A for CO, NO2, and NH3 systems at the bias voltage of 0.5 V. Our results imply that the 2D g-C4N3 can be a superior substrate material for sensing of multiple toxic gases.
机译:使用第一原理计算,我们研究了使用一种基材材料选择多种有毒气体的可能性。在此,我们探讨了在二维石墨氮化物上的H-2,N-2,O-2,CO,CO 2,NO2和NH3气体分子的运输性能(2D G-C4N3)。如H-2,N-2和O-2如H-2,N-2和O-2具有非常弱的吸附能量(等于或小于0.1eV),并且CO 2具有0.23eV的吸附能。在典型的有毒气体分子吸附系统中,我们发现了一个明显的电荷转移。在CO和NH 3吸附系统中,发现从分子到底物的0.397和0.418电子的电荷转移,而NO2分子从基材上获得0.124个电子。由于这种电荷转移大量的电荷转移,我们在CO,NO2和NH3系统中获得了4.57,1.29和1.93eV的大吸附能量。此外,通过I-V曲线计算,我们发现电流差异很大。在0.5V的偏置电压下,计算的电流为21,13.11和16.16μA的CO,NO2和NH3系统。我们的结果意味着2D G-C4N3可以是用于感测多种有毒气体的优异基底材料。

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