Lead-Free Double Perovskites Rb2TlSbX6 (X=Cl, Br, and I) As an Emerging Aspirant for Solar Cells and Green Energy Applications

被引:15
作者
Ayyaz, Ahmad [1 ]
Saidi, Samah [2 ]
Alkhaldi, Noura Dawas [3 ]
Murtaza, G. [1 ]
Sfina, N. [4 ]
Mahmood, Q. [5 ,6 ]
机构
[1] Govt Coll Univ, Ctr Adv Studies Phys CASP, Lahore 54000, Pakistan
[2] Prince Sattam Bin Abdulaziz Univ, Coll Sci & Humanities Al Kharj, Dept Phys, Al Kharj 11942, Saudi Arabia
[3] Univ Hafr Al Batin UHB, Univ Coll Nairiyah, Dept Sci & Technol, Nairiyah 31981, Saudi Arabia
[4] King Khalid Univ, Coll Sci & Arts Mahayel Asir, Dept Phys, Abha, Saudi Arabia
[5] Imam Abdulrahman Bin Faisal Univ, Basic & Appl Sci Res Ctr, POB 1982, Dammam 31441, Saudi Arabia
[6] Imam Abdulrahman Bin Faisal Univ, Coll Sci, Dept Phys, POB 1982, Dammam 31441, Saudi Arabia
关键词
Density functional theory; Stability; Thermodynamic; Optical properties; Figure of merit; ELECTRONIC-PROPERTIES; AB-INITIO; 1ST-PRINCIPLES; TEMPERATURE; ALLOYS; OXIDES; CL;
D O I
10.1016/j.solener.2024.112844
中图分类号
TE [石油、天然气工业]; TK [能源与动力工程];
学科分类号
0807 ; 0820 ;
摘要
This study utilized the WIEN2k simulation program to examine the structural, mechanical, thermodynamic, optoelectronic, and thermoelectric characteristics of lead-free double perovskites Rb2TlSbX6 (X=Cl, Br, and I). The objective is to assess their potential contribution to next-generation photovoltaic and thermoelectric systems. The ab initio molecular dynamics (AIMD) has validated that materials are thermodynamically stable. Examining mechanical features confirms the mechanical stability and ductile characteristics of studied perovskites. Rb2TlSbCl6 exhibits superior flexibility and stiffness, whereas Rb2TlSbI6 demonstrates the highest level of anisotropy. The thermodynamic parameters confirm the thermal stability and stronger bonding at elevated pressure and temperature. The electronic features, determined by implementing the GGA-PBE and TB-mBJ functionals, indicate direct band gaps at the Gamma- Gamma position. The band gap ranges from 1.22 eV to 1.74 eV, 0.94 to 1.34 eV, and 0.81 eV to 1.15 eV for Rb2TlSbCl6, Rb2TlSbBr6, and Rb2TlSbI6, respectively. The analyzed optical characteristics reveal significant absorption and conductivity with decreased reflectance and optical loss between 0 and 6 eV. Rb2TlSbI6 has the greatest dielectric constant, which suggests a lower recombination rate of electronhole pairs. The thermoelectric characteristics demonstrate a large figure of merit values of 0.78, 0.80, and 0.84 at room temperature. Therefore, these materials have the significant capability for solar cell technology and may effectively convert thermal energy into usable electrical power.
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页数:16
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