Computational Study of Magnetic Behaviour in Ni-Adsorbed Nb2C-OF MXene using Density Functional Theory
Zarah Khan, Saleem Ayaz Khan, Ayesha Zaheer, and Syed Rizwan

TL;DR
This study uses density functional theory to analyze the magnetic properties of Ni-adsorbed Nb2C-OF MXene, revealing its potential for spintronics and magnetic data storage applications.
Contribution
It provides the first computational analysis of Ni adsorption effects on Nb2C-OF MXene's magnetic properties using DFT methods.
Findings
Ni-ad-Nb2C-OF is metallic with a magnetic moment of +1.01516 μ_B.
The material exhibits ferromagnetic behavior.
Potential applications in spintronics and nano magnetic data storage.
Abstract
Magnetic 2D materials have achieved significantly consideration owing to their encouraging applications. A variation of these 2D materials by occurrence of defects, by the transition-metal doping or adsorption or by the surface functionalization can initiate both the spin-polarization and magnetic properties in these materials. Density functional theory (DFT) is used to determine the electric, magnetic properties along with the electronic structures and stability of synthesized two-dimensional materials. This work describes the magnetic properties of Ni-ad-Nb2C-OF MXene. The study focuses on the computational approach based first principal calculation providing insight onto the magnetic properties of adsorbed compound and comparing it with pristine Nb2C-OF MXene. The pristine Nb2C-OF and Ni-ad-Nb2C-OF structures are simulated and optimized using Wien2k software. Using…
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Taxonomy
TopicsMXene and MAX Phase Materials · Graphene research and applications · Boron and Carbon Nanomaterials Research
