Adsorption behavior of HFCO and COF2 gasses on pristine, Al-doped, and N-doped (8, 0) single-wall carbon nanotubes and pristine aluminum nitride nanotube: A first-principles study

IF 16.4 1区 化学 Q1 CHEMISTRY, MULTIDISCIPLINARY
Marjan Ghafari , Hossein Mohammadi-Manesh , Forough Kalantari Fotooh
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Abstract

The detection of organic pollutants in the environment is crucial due to their significant impact on human health. Formyl fluoride (HFCO) and carbonyl fluoride (COF2) are toxic gasses that contribute to stratospheric ozone depletion. To explore a potential sensor material for these compounds, the adsorption properties of HFCO and COF2 on pristine (8, 0) single-walled carbon nanotubes (SWCNTs), aluminum-doped SWCNTs (Al-SWCNTs), nitrogen-doped SWCNTs (N-SWCNTs), and aluminum nitride nanotube (AlNNTs) were investigated using density functional theory (DFT) calculations. Obtained structural and electronic results reveal no significant after HFCO and COF2 adsorption on pristine SWCNT. However, the conductivity and polarizability of Al- SWCNT increases throw HFCO and COF2 adsorption. It was shown that this adsorption strongly depends on molecular orientation toward SWCNT. Structural and electronic findings show that studied molecules undergoes a physical adsorption to N- SWCNT. However, AlNNT was also found to show significant changes in structural and electronic properties after HFCO and COF2 adsorption. This adsorption leads to a significant (nearly 45%) reduction in the HOMO-LUMO gap of AlNNTs. Therefore, it is proposed from this study that Al-SWCNTs and AlNNTs are promising candidates for HFCO and COF2 gas sensors. Moreover, AlNNTs exhibit intrinsic detection capabilities without structural manipulation via doping which makes AlNNTs particularly attractive for sensor applications. Moreover, the capability of AlNNT without manipulating makes this nanotube a good and easy made candidate for these compounds adsorption.

Abstract Image

原始、掺铝和掺氮(8,0)单壁碳纳米管以及原始氮化铝纳米管对 HFCO 和 COF2 气体的吸附行为:第一原理研究
由于环境中的有机污染物对人类健康有重大影响,因此对其进行检测至关重要。甲酰氟(HFCO)和羰基氟(COF2)是导致平流层臭氧消耗的有毒气体。为了探索这些化合物的潜在传感器材料,我们利用密度泛函理论(DFT)计算研究了 HFCO 和 COF2 在原始(8, 0)单壁碳纳米管(SWCNTs)、掺铝单壁碳纳米管(Al-SWCNTs)、掺氮单壁碳纳米管(N-SWCNTs)和氮化铝纳米管(AlNTs)上的吸附特性。所获得的结构和电子结果表明,原始 SWCNT 在吸附 HFCO 和 COF2 后并无明显变化。然而,吸附 HFCO 和 COF2 后,Al- SWCNT 的电导率和极化率增加。研究表明,这种吸附作用在很大程度上取决于分子对 SWCNT 的取向。结构和电子学研究结果表明,所研究的分子会对 N- SWCNT 进行物理吸附。然而,在吸附 HFCO 和 COF2 后,AlNNT 的结构和电子特性也发生了显著变化。这种吸附导致 AlNNT 的 HOMO-LUMO 间隙显著降低(近 45%)。因此,本研究认为 Al-SWCNTs 和 AlNNTs 有希望成为 HFCO 和 COF2 气体传感器的候选材料。此外,AlNNTs 无需通过掺杂进行结构操作就能表现出固有的检测能力,这使得 AlNNTs 在传感器应用中特别具有吸引力。此外,AlNNT 无需操作的能力使这种纳米管成为吸附这些化合物的良好和简易的候选材料。
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来源期刊
Accounts of Chemical Research
Accounts of Chemical Research 化学-化学综合
CiteScore
31.40
自引率
1.10%
发文量
312
审稿时长
2 months
期刊介绍: Accounts of Chemical Research presents short, concise and critical articles offering easy-to-read overviews of basic research and applications in all areas of chemistry and biochemistry. These short reviews focus on research from the author’s own laboratory and are designed to teach the reader about a research project. In addition, Accounts of Chemical Research publishes commentaries that give an informed opinion on a current research problem. Special Issues online are devoted to a single topic of unusual activity and significance. Accounts of Chemical Research replaces the traditional article abstract with an article "Conspectus." These entries synopsize the research affording the reader a closer look at the content and significance of an article. Through this provision of a more detailed description of the article contents, the Conspectus enhances the article's discoverability by search engines and the exposure for the research.
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