Structural, optical and electronic properties of novel 2D carbides and nitrides MXene based Materials: A DFT study

MXene is regarded as an innovative 2D nanomaterial for energy storage applications. In this study, we calculated the structural, electronic, optical, and mechanical properties of Ti 3 X 2 (X = C, N, P, S) MXene materials using the CASTEP simulation package based on the density functional theory. The...

Ausführliche Beschreibung

Gespeichert in:
Bibliographische Detailangaben
Veröffentlicht in:Optical and quantum electronics 2023-07, Vol.55 (7), Article 576
Hauptverfasser: Fatima, Jawaria, Tahir, M. B., Rehman, M. Awais, Assiri, Mohammed A., Imran, Muhammad, Alzaid, Meshal, Alrobei, Hussein
Format: Artikel
Sprache:eng
Schlagworte:
Online-Zugang:Volltext
Tags: Tag hinzufügen
Keine Tags, Fügen Sie den ersten Tag hinzu!
Beschreibung
Zusammenfassung:MXene is regarded as an innovative 2D nanomaterial for energy storage applications. In this study, we calculated the structural, electronic, optical, and mechanical properties of Ti 3 X 2 (X = C, N, P, S) MXene materials using the CASTEP simulation package based on the density functional theory. The calculated lattice parameters at zero pressure are in good agreement with the previously reported results. We also calculate the studied materials’ formation energy to check the compounds’ stability. The negative formation energy values suggest that Ti 3 X 2 (X = C, N, P, S) compounds are stable and can be synthesized experimentally. The electronic properties, i.e., electronic band structures, total density of state and partial density of state, suggest that Ti 3 X 2 (X = C, N, P, S) compounds are metallic. To understand the behavior of light scattering, we calculate the optical properties of Ti 3 X 2 (X = C, N, P, S). The maximum reflectivity occurs at 62%, 56%, 49%, and 33% for Ti 3 P 2 , Ti 3 C 2 , Ti 3 N 2 and Ti 3 S 2 , respectively. Optical properties also suggest the metallic nature of studied materials. Mechanical properties suggest that Ti 3 C 2 is ductile behavior and Ti 3 N 2 , Ti 3 P 2 , and Ti 3 S 2 are brittle behavior.
ISSN:0306-8919
1572-817X
DOI:10.1007/s11082-023-04803-y