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Structural Magnetic and Electronic Properties of 3d Transition-Metal Atoms Adsorbed Monolayer BC2N: A First-principles Study

机译:3d过渡金属原子吸附的单层BC2N的结构磁性和电子性质:第一性原理研究

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摘要

Based on the monolayer BC2N structure, the structural, electronic and magnetic properties of 3d transition metal (TM) atoms (V, Cr, Mn, Fe, Co and Ni) adsorbed on the monolayer BC2N, are studied by using the first principle method. The results show that 3d transition metal atoms are stably adsorbed on the monolayer BC2N. The most stable adsorption sites for V, Cr, and Mn atoms are the hollow adsorption site (H) of BC2N, while the other 3d TM atoms (Fe, Co, Ni) are more readily adsorbed above the C atoms (Tc). The majority of TM atoms are chemically adsorbed on BC2N, whereas Cr and Mn atoms are physically adsorbed on BC2N. Except for Ni, most 3d transition metal atoms can induce the monolayer BC2N magnetization, and the spin-charge density indicated that the magnetic moments of the adsorption systems are mainly concentrated on the TM atoms. Moreover, the introduction of TM atoms can modulate the electronic structure of a single layer of BC2N, making it advantageous for spintronic applications, and for the development of magnetic nanostructures.
机译:基于单层BC2N结构,采用第一原理方法研究了吸附在单层BC2N上的3d过渡金属(TM)原子(V,Cr,Mn,Fe,Co和Ni)的结构,电子和磁性。结果表明,3d过渡金属原子稳定地吸附在单层BC2N上。 V,Cr和Mn原子最稳定的吸附位点是BC2N的中空吸附位点(H),而其他3d TM原子(Fe,Co,Ni)更容易吸附在C原子上方(Tc)。大多数TM原子化学吸附在BC2N上,而Cr和Mn原子物理吸附在BC2N上。除镍外,大多数3d过渡金属原子均可诱导单层BC2N磁化,自旋电荷密度表明吸附系统的磁矩主要集中在TM原子上。此外,TM原子的引入可以调节BC2N单层的电子结构,使其对自旋电子学应用以及磁性纳米结构的开发均具有优势。

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