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NO、NO、NH和CO在贵金属(Rh、Pd、Ag、Ir、Pt、Au)修饰的六方氮化硼单层上的吸附:第一性原理研究。

Adsorption of NO, NO, NH, and CO on Noble Metal (Rh, Pd, Ag, Ir, Pt, Au)-Modified Hexagonal Boron Nitride Monolayers: A First-Principles Study.

作者信息

Zhang Yan, Qin Cong, Zhu Linghao, Wang Yan, Cao Jianliang

机构信息

College of Chemistry and Chemical Engineering, Henan Polytechnic University, Jiaozuo 454000, China.

State Collaborative Innovation Center of Coal Work Safety and Clean-Efficiency Utilization, Henan Polytechnic University, Jiaozuo 454000, China.

出版信息

Langmuir. 2024 Jan 9;40(1):1058-1071. doi: 10.1021/acs.langmuir.3c03282. Epub 2023 Dec 25.

Abstract

To investigate the application of modified hexagonal boron nitride (-BN) in the detection and monitoring of harmful gases (NO, NO, NH, and CO), first-principles calculations are applied to study the geometric structure and electronic behavior of the adsorption system. In this paper, the four adsorption sites, namely, B, N, bridge, and hollow sites, are considered to explore the stable adsorption structure of metals (M = Rh, Pd, Ag, Ir, Pt, and Au) on the BN surface. The calculation results demonstrate that the geometric structures of metal at the N-site are relatively stable. Subsequently, the different adsorption structures of NO, NO, NH, and CO on M-BN are researched. The electron transfer, charge difference density, and work function of the stable adsorption structure are calculated. The results show that NO, NO, and CO have the strongest adsorption capacity in the Ir-BN system, with adsorption energies of -2.705, -5.064, and -3.757 eV, respectively. The Pt-BN system has an excellent adsorption performance (-2.251 eV) for NH. Compared with the M-BN system, the work function of the adsorption system increases after adsorbing NO, while it decreases after adsorbing NH. This work shows that -BN with metal modification is a potential material for online monitoring of harmful gases.

摘要

为了研究改性六方氮化硼(-BN)在有害气体(NO、NO、NH和CO)检测与监测中的应用,采用第一性原理计算来研究吸附体系的几何结构和电子行为。本文考虑了B、N、桥位和空位这四个吸附位点,以探究金属(M = Rh、Pd、Ag、Ir、Pt和Au)在BN表面的稳定吸附结构。计算结果表明,金属在N位点的几何结构相对稳定。随后,研究了NO、NO、NH和CO在M-BN上的不同吸附结构。计算了稳定吸附结构的电子转移、电荷差分密度和功函数。结果表明,NO、NO和CO在Ir-BN体系中的吸附能力最强,吸附能分别为-2.705、-5.064和-3.757 eV。Pt-BN体系对NH具有优异的吸附性能(-2.251 eV)。与M-BN体系相比,吸附NO后吸附体系的功函数增加,而吸附NH后功函数降低。这项工作表明,金属改性的-BN是一种用于有害气体在线监测的潜在材料。

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