A DFT Study on Sensing Performance of H2S and NO2 Gas Molecules on 2D Pentagonal PdSe2

Prasanna Karki, Bibek Chettri, B. Kunwar, B. Sharma
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引用次数: 2

Abstract

The sensing and adsorption properties of H2S and NO2 on 2D PdSe2 are investigated using density functional theory in this paper. The charge transfer, adsorption energy, density of states and band structure of H2S and NO2 gas molecules on a PdSe2 monolayer were computed to investigate their adsorption behaviour. The H2S and NO2 molecules have been found to interact with the surface of PdSe2 monolayer via a high adsorption energy. The indirect bandgap of pristine PdSe2 is 0.52 eV, which decreases to 0.37 eV and 0.25 eV for H2S and NO2, respectively. After the adsorption of H2S and NO2 gas molecules, a significant shift in high peak DOS and electron density of the PdSe2 monolayer was observed according to electron difference density.
二维五边形PdSe2上H2S和NO2气体分子传感性能的DFT研究
利用密度泛函理论研究了二维PdSe2对H2S和NO2的传感和吸附性能。计算了H2S和NO2气体分子在PdSe2单层上的电荷转移、吸附能、态密度和能带结构,研究了它们的吸附行为。发现H2S和NO2分子通过高吸附能与PdSe2单层表面相互作用。原始PdSe2的间接带隙为0.52 eV, H2S和NO2的间接带隙分别减小到0.37 eV和0.25 eV。吸附H2S和NO2气体分子后,PdSe2单层的峰值DOS和电子密度发生了明显的变化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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