Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

The Structural, Electronic, Magnetic and Elastic Properties of Full-Heusler Co2CrAl and Cr2MnSb: An Ab Initio Study

View through CrossRef
In this paper, the full-potential, linearized augmented plane wave (FP-LAPW) method was employed in investigating full-Heusler Co2CrA1’s structural, elastic, magnetic and electronic properties. The FP-LAPW method was employed in computing the structural parameters (bulk modulus, lattice parameters, c/a and first pressure derivatives). The optimized structural parameters were determined by generalized gradient approximation (GGA) for the exchange-correlation potential, Vxc. Estimating the energy gaps for these compounds was accomplished through modified Becke–Johnson potential (mBJ). It was found that the conventional Heusler compound Co2CrA1 with mBJ and CGA approaches had a half-metallic character, and its spin-down configuration had an energy gap. It was also found that the conventional and inverse Heusler Cr2MnSb and tetragonal (139) (Co2CrA1, Cr2MnSb) compounds with a half-metallic character had direct energy gaps in the spin-down configuration. To a certain degree, the total magnetic moments for the two compounds were compatible with the theoretical and experimental results already attained. Mechanically, we found that the conventional and inverse full-Heusler compound Co2CrAl was stable, but the inverse Cr2MnSb was unstable in the ferromagnetic state. The conventional Heusler compound Cr2MnSb was mechanically stable in the ferromagnetic state.
Title: The Structural, Electronic, Magnetic and Elastic Properties of Full-Heusler Co2CrAl and Cr2MnSb: An Ab Initio Study
Description:
In this paper, the full-potential, linearized augmented plane wave (FP-LAPW) method was employed in investigating full-Heusler Co2CrA1’s structural, elastic, magnetic and electronic properties.
The FP-LAPW method was employed in computing the structural parameters (bulk modulus, lattice parameters, c/a and first pressure derivatives).
The optimized structural parameters were determined by generalized gradient approximation (GGA) for the exchange-correlation potential, Vxc.
Estimating the energy gaps for these compounds was accomplished through modified Becke–Johnson potential (mBJ).
It was found that the conventional Heusler compound Co2CrA1 with mBJ and CGA approaches had a half-metallic character, and its spin-down configuration had an energy gap.
It was also found that the conventional and inverse Heusler Cr2MnSb and tetragonal (139) (Co2CrA1, Cr2MnSb) compounds with a half-metallic character had direct energy gaps in the spin-down configuration.
To a certain degree, the total magnetic moments for the two compounds were compatible with the theoretical and experimental results already attained.
Mechanically, we found that the conventional and inverse full-Heusler compound Co2CrAl was stable, but the inverse Cr2MnSb was unstable in the ferromagnetic state.
The conventional Heusler compound Cr2MnSb was mechanically stable in the ferromagnetic state.

Related Results

Magnetic cloak made of NdFeB permanent magnetic material
Magnetic cloak made of NdFeB permanent magnetic material
In the past few years, the concept of an electromagnetic invisibility cloak has received much attention. Based on the pioneering theoretical work, invisibility cloaks have been gre...
Form Follows Force: A theoretical framework for Structural Morphology, and Form-Finding research on shell structures
Form Follows Force: A theoretical framework for Structural Morphology, and Form-Finding research on shell structures
The springing up of freeform architecture and structures introduces many challenges to structural engineers. The main challenge is to generate structural forms with high structural...
Towards Novel Spintronic Materials: Mg-Based d0-d Heusler (Nowotny–Juza) Compounds
Towards Novel Spintronic Materials: Mg-Based d0-d Heusler (Nowotny–Juza) Compounds
Heusler compounds and alloys constitute a burgeoning class of materials with exceptional properties, holding immense promise for advanced technologies. Electronic band structure ca...
Magnetization behavior of electrochemically synthesized Co2MnSn full Heusler alloy nanowire arrays
Magnetization behavior of electrochemically synthesized Co2MnSn full Heusler alloy nanowire arrays
Highly ordered Co2MnSn full Heusler alloy nanowire (NW) arrays were for the first time electrochemically synthesized into an anodic aluminum oxide (AAO) template. In order to obtai...
Magnetic Properties of Heusler Alloys and Nanoferrites
Magnetic Properties of Heusler Alloys and Nanoferrites
In this chapter, results of our recent investigations on the structural, microstructural and magnetic properties of Cu-based Heusler alloys and MFe2O4 (M = Mn, Fe, Co, Ni, Cu, Zn) ...
Platonic Relations
Platonic Relations
The loop is one of the primary means of structuration for electronic music from mainstream to avant-garde styles. Indeed, during forums at the recent 2002 AD Analogue 2 Digital eve...
Design of Heusler alloys using Co-VB-Sn (VB = V, Nb, Ta) atoms within ab initio calculations for thermoelectric applications
Design of Heusler alloys using Co-VB-Sn (VB = V, Nb, Ta) atoms within ab initio calculations for thermoelectric applications
Environmentally friendly energetic matrices are essential for sustainable human development. In this perspective, Heusler alloys have shown to be promising materials for thermoelec...
First-principle investigation of structural, electronic and magnetic properties of Co2VIn and CoVIn Heusler compounds
First-principle investigation of structural, electronic and magnetic properties of Co2VIn and CoVIn Heusler compounds
Investigation of the structural, electronic and magnetic properties of full-Heusler Co2VIn as well as half-Heusler CoVIn Cobalt based Heusler compounds using density functional the...

Back to Top