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何成

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  • 博士生导师 硕士生导师
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  • 学历: 硕博连读
  • 学位: 博士
  • 学科: 材料科学与工程

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Electric field-modulated high sensitivity and selectivity for NH3 on α-C2N2 nanosheet: Insights from DFT calculations

发布时间:2025-04-30
点击次数:
发布时间:
2025-04-30
论文名称:
Electric field-modulated high sensitivity and selectivity for NH3 on α-C2N2 nanosheet: Insights from DFT calculations
发表刊物:
Applied Surface Science
摘要:
An electric field-modulated α-C2N2 of high sensitivity and selectivity toward NH3 has been studied by using the first-principle calculations. Firstly, the structural stability of α-C2N2 nanosheet is proved by phonon dispersion and molecular dynamics calculations. Then, the adsorption energies and electronic properties of CO, CO2, H2, NO2, NH3, O2, N2, SO2 or CH4 on α-C2N2 are calculated, with the discussion about the possibility of α-C2N2 used as NH3 sensors. The results show that the amount of charge transfer for NH3 on α-C2N2 is the most in these nine adsorption systems. Therefore, NH3 could be easier detected in experiments. Next, we find that the adsorption energies of NH3 on α-C2N2 varied from −0.83 eV to −0.24 eV under the external electric field (VE) from VE = −0.6 V/Å to VE = +0.3 V/Å. Therefore, the adsorption and desorption of NH3 on α-C2N2 can be well realized under the control of VE. α-C2N2 nanosheet has the potential to be used as highly sensitive and selective NH3 sensor by controlling VE. More importantly, the current-voltage curves of NH3 before and after adsorption on α-C2N2 has changed significantly, which means that NH3 can be measured directly in practical application.
合写作者:
C. He, M. Zhang , T.T. Li W.X. Zhang
卷号:
2020,505,144619
页面范围:
2020,505,144619
是否译文:
发表时间:
2020-03-01