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钯团簇在石墨烯载体上吸附的密度泛函理论研究

Density functional theory study of palladium cluster adsorption on a graphene support.

作者信息

Hussain Riaz, Saeed Muhammad, Mehboob Muhammad Yasir, Khan Saif Ullah, Usman Khan Muhammad, Adnan Muhammad, Ahmed Mahmood, Iqbal Javed, Ayub Khurshid

机构信息

Department of Chemistry, University of Okara Okara 56300 Pakistan.

Department of Chemistry, Government College University Faisalabad 38000 Pakistan.

出版信息

RSC Adv. 2020 May 29;10(35):20595-20607. doi: 10.1039/d0ra01059f. eCollection 2020 May 27.

Abstract

The geometric, thermodynamic and electronic properties of Pd-graphene nanocomposites are comprehensively studied through quantum mechanical methods. Geometries of these clusters are optimized with the well-calibrated Minnesota functional M06-2X. The adsorption energies calculated at the M06-2X/LANL2DZ level show better agreement with those calculated from MP2/ANO-RCC-VDZP. Two different representative models for graphene, coronene and hexabenzocoronene, are used. The adsorption energies analysis reveals that the interaction energies increase with the size of the adsorbed cluster. However, for Pd /hexabenzocoronene, the interaction energies show a sudden drop at Pd/hexabenzocoronene. The difference in behavior between the interaction energies of Pd /hexabenzocoronene and Pd /coronene is attributed to the edge effect present in coronene. The electronic properties, including highest occupied molecular orbital (HOMO) and lowest unoccupied molecular orbital (LUMO), Fermi level, molecular electrostatic potential (MEP), dipole moment, vertical ionization potential (VIP), vertical electron affinity (VEA), chemical hardness (), softness () and chemical potential () are studied. The VIP and VEA reveal that Pd /coronene clusters are stable in nature with the least reactivity. The HOMO-LUMO energy gaps are reduced with the increase in cluster size. The electronic properties show irregular trends, where the most favorable electronic properties are obtained for Pd/coronene and Pd/coronene.

摘要

通过量子力学方法全面研究了钯-石墨烯纳米复合材料的几何、热力学和电子性质。这些团簇的几何结构用经过良好校准的明尼苏达函数M06-2X进行了优化。在M06-2X/LANL2DZ水平计算的吸附能与从MP2/ANO-RCC-VDZP计算的吸附能显示出更好的一致性。使用了两种不同的石墨烯代表性模型,即并五苯和六苯并蔻。吸附能分析表明,相互作用能随着吸附团簇尺寸的增加而增加。然而,对于Pd/六苯并蔻,相互作用能在Pd/六苯并蔻处突然下降。Pd/六苯并蔻和Pd/并五苯相互作用能行为的差异归因于并五苯中存在的边缘效应。研究了电子性质,包括最高占据分子轨道(HOMO)和最低未占据分子轨道(LUMO)、费米能级、分子静电势(MEP)、偶极矩、垂直电离势(VIP)、垂直电子亲和势(VEA)、化学硬度()、软度()和化学势()。VIP和VEA表明,Pd/并五苯团簇本质上是稳定的,反应性最低。HOMO-LUMO能隙随着团簇尺寸的增加而减小。电子性质呈现不规则趋势,其中Pd/并五苯和Pd/并五苯获得了最有利的电子性质。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cb11/9054311/cf7e5d89df5c/d0ra01059f-f1.jpg

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