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二硫化钼作为一种用于非极性气体的高效吸附剂。

Molybdenum disulfide as a highly efficient adsorbent for non-polar gases.

作者信息

Yu Ningning, Wang Lu, Li Min, Sun Xiaotian, Hou Tingjun, Li Youyong

机构信息

Functional Nano & Soft Materials Laboratory (FUNSOM), Soochow University, Suzhou, 215123 Jiangsu, China.

出版信息

Phys Chem Chem Phys. 2015 May 7;17(17):11700-4. doi: 10.1039/c5cp00161g.

Abstract

Molybdenum disulfide (MoS2), a kind of graphene-like, two-dimensional material, has attracted great interest because of its unique properties and potential applications in electronics and sensors. In this paper, first-principle calculations and grand canonical Monte Carlo (GCMC) simulations are performed and used to show that the MoS2 layer is efficient at absorbing non-polar gases. Compared with the popular gas sorbents (metal organic frameworks and carbon-based materials), MoS2 has additional advantages, including large surface to volume ratio and tunable properties. The non-polar gas [carbon dioxide (CO2) and methane (CH4)] adsorption on the MoS2 layer with and without vacancies has been systematically studied. The perfect MoS2 shows little or no adsorption for CO2 and CH4 molecules, but the MoS2 with a single S vacancy and double S vacancies exhibits an excellent adsorption ability for CO2 and CH4 gases. The adsorption energies were 65 kJ mol(-1) for CO2 and 47 kJ mol(-1) for CH4 (van der Waals-D2), respectively. An orbital coupling between the p orbital of the CO2 (or CH4) molecule and the d orbital of the Mo atom was observed. GCMC simulation results show that MoS2 with a single S vacancy could absorb 42.1 wt% of CO2 and 37.6 wt% of CH4 under a pressure of 80 bar at room temperature. The results given in this paper indicate that monolayer MoS2 with defects is a highly efficient absorbent for non-polar gases.

摘要

二硫化钼(MoS₂)是一种类似石墨烯的二维材料,因其独特的性质以及在电子学和传感器领域的潜在应用而备受关注。本文进行了第一性原理计算和巨正则蒙特卡罗(GCMC)模拟,结果表明MoS₂层对非极性气体具有高效的吸附能力。与常见的气体吸附剂(金属有机框架材料和碳基材料)相比,MoS₂具有诸多额外优势,包括较大的比表面积和可调控的性质。本文系统研究了有无空位的MoS₂层对非极性气体[二氧化碳(CO₂)和甲烷(CH₄)]的吸附情况。完美的MoS₂对CO₂和CH₄分子几乎没有吸附作用,但含有单个S空位和双S空位的MoS₂对CO₂和CH₄气体表现出优异的吸附能力。CO₂的吸附能为65 kJ mol⁻¹,CH₄的吸附能为47 kJ mol⁻¹(范德华-D2)。观察到CO₂(或CH₄)分子的p轨道与Mo原子的d轨道之间存在轨道耦合。GCMC模拟结果表明,在室温下80 bar的压力下,含有单个S空位的MoS₂能够吸附42.1 wt%的CO₂和3

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