Khalil, R. M. A., Hussain, M. I., Zafar, S., Fatima, R., Alotaibi, N. H., Mohammad, S., . . . Nasir, J. A. (2024). Comprehensive analysis of the phase stability, optoelectronic, mechanical, thermodynamic, and vibrational properties for prospective optoelectronic applications of novel combinations of chalcogenides XScTe2 (X = Li, Rb) by employing density functional theory. Journal of Materials Science, 59(19), 8374. https://doi.org/10.1007/s10853-024-09677-3
Chicago Style (17th ed.) CitationKhalil, R. M. Arif, Muhammad Iqbal Hussain, Shumaila Zafar, Rabail Fatima, Nouf H. Alotaibi, Saikh Mohammad, Fayyaz Hussain, Ayesha Asma, and Jamal Abdul Nasir. "Comprehensive Analysis of the Phase Stability, Optoelectronic, Mechanical, Thermodynamic, and Vibrational Properties for Prospective Optoelectronic Applications of Novel Combinations of Chalcogenides XScTe2 (X = Li, Rb) by Employing Density Functional Theory." Journal of Materials Science 59, no. 19 (2024): 8374. https://doi.org/10.1007/s10853-024-09677-3.
MLA (9th ed.) CitationKhalil, R. M. Arif, et al. "Comprehensive Analysis of the Phase Stability, Optoelectronic, Mechanical, Thermodynamic, and Vibrational Properties for Prospective Optoelectronic Applications of Novel Combinations of Chalcogenides XScTe2 (X = Li, Rb) by Employing Density Functional Theory." Journal of Materials Science, vol. 59, no. 19, 2024, p. 8374, https://doi.org/10.1007/s10853-024-09677-3.