First-principles calculations of structural, elastic, electronic, and optical properties of CaYP (Y = Cu, Ag) Heusler alloys

被引:0
作者
Lamia Drici
Fadila Belkharroubi
Fatima Zohra Boufadi
Ibrahim Ameri
Mohammed Ameri
Walid Belkilali
Saleha Azzi
Friha Khelfaoui
Y. Al-Douri
机构
[1] University of Djillali Liabes,Laboratory of Physical Chemistry of Advanced Materials (LPCMA)
[2] University of Sciences and Technology USTO-MB,Genius Physics Department, Faculty of Physics
[3] University Ahmed Zabana,Department of Physics
[4] Université des Sciences et de la Technologie d’Oran,Laboratoire de Physique des Matériaux et fluides (LPMF)
[5] USTO,Physico
[6] École Supérieure en Sciences Biologiques d’Oran (ESSBO),Chemical Studies Laboratory
[7] University of Saida-Dr. Moulay Tahar,Nanotechnology and Catalysis Research Center (NANOCAT)
[8] University of Malaya,Department of Mechatronics Engineering, Faculty of Engineering and Natural Sciences
[9] Bahcesehir University,Physics Department, Faculty of Science
[10] University of Sidi-Bel-Abbes,undefined
来源
Emergent Materials | 2022年 / 5卷
关键词
DFT; CaCuP and CaAgP; Semiconductor; Ultra-violet;
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中图分类号
学科分类号
摘要
Our comparative study is carried out on different structural, elastic, electronic, and optical properties of two new half-Heusler CaCuP and CaAgP compounds by using first-principles calculations based on density functional density. The generalized gradient approximation (GGA) is used for studying exchange and correlation effects. The mBJ-GGA approximation is also employed to give a better approximation of the energy bandgap for the two CaCuP and CaAgP compounds. Our two compounds are more stable in cubic structure type I structure and the lattices parameters obtained in good agreement with other available data. The two compounds are mechanically stable; the calculated elastic constants strictly obey the stability criteria with brittle behavior, isotropic, and ionic nature in cubic structure type I. The electronic properties have pointed to a semiconductor behavior for the two compounds and have shown a direct gap Γ→Γ equal to 1.785 eV for CaCuP and 1.621 eV for CaAgP with mBJ-GGA approximation. The study of optical properties with mBJ-GGA approximation as a function of photons energy for a wide range between 0 and 27 eV reveals that the two half-Heusler CaCuP and CaAgP compounds display the maximum reflectivity and absorption in the ultra violet range.
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页码:1039 / 1054
页数:15
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