Anithaa V S, Shankar R, Vijayakumar S
Department of Physics, Bharathiar University, Coimbatore, 641046, India.
Department of Medical Physics, Bharathiar University, Coimbatore, 641046, India.
J Mol Model. 2017 Apr;23(4):132. doi: 10.1007/s00894-017-3300-5. Epub 2017 Mar 23.
The functionalization of graphene with transition metals is of great interest due to its wide range of applications, such as hydrogen storage, spintronics, information storage, etc. Due to its magnetic property adsorption of Mn atom on graphene has a high consequence on the electronic properties of graphene. The increase in size of the graphene sheet with hydrogen termination has a high impact on the transformation of electronic properties of the graphene sheet. Hence in this work, we investigate the size as well as change in structural and electronic properties of pristine/defective graphene sheets on adsorption of Mn atom using density functional theory methods. From the results obtained a higher adsorption energy value of 3.04 eV is found for Mn adatom on the defected graphene sheet than the pristine, 1.85 eV. It is subject to the coverage effect which decreases on increasing number of carbon atoms. Moreover, a decrease in energy gap is observed in pristine and defected graphene sheets with a high number of carbon atoms. The density of states illustrates the significant effect for hydrogen termination in the conduction band of the Mn adsorbed graphene sheet with low carbon atoms. Graphical Abstract Mn adatom on graphene at different sites.
过渡金属对石墨烯的功能化修饰因其在诸如储氢、自旋电子学、信息存储等广泛应用中具有重要意义。由于其磁性,锰原子在石墨烯上的吸附对石墨烯的电子性质有重大影响。氢终止的石墨烯片尺寸增加对其电子性质的转变有很大影响。因此,在本工作中,我们使用密度泛函理论方法研究了原始/缺陷石墨烯片吸附锰原子时的尺寸以及结构和电子性质的变化。从获得的结果来看,发现锰吸附原子在缺陷石墨烯片上的吸附能值为3.04 eV,高于原始石墨烯片的1.85 eV。这受到覆盖效应的影响,随着碳原子数量的增加而降低。此外,在碳原子数量较多的原始和缺陷石墨烯片中观察到能隙减小。态密度表明,氢终止对碳原子数少的锰吸附石墨烯片导带具有显著影响。图形摘要:石墨烯上不同位置的锰吸附原子。