Ahmed Md Istiaque, Biswas Arpon, Asif Tariqul Islam, Saiduzzaman Md, Islam Minhajul
Department of Materials Science and Engineering, Khulna University of Engineering & Technology (KUET), Khulna, 9203, Bangladesh.
Bangladesh Atomic Energy Regulatory Authority (BAERA), E-12/A, Agargaon, Dhaka, 1207, Bangladesh.
Heliyon. 2024 Jul 4;10(13):e34059. doi: 10.1016/j.heliyon.2024.e34059. eCollection 2024 Jul 15.
Under varying hydrostatic pressures ranging from 0 to 150 GPa, first-principles calculations were conducted to investigate the structural, electronic, bonding, optical, elastic, and mechanical characteristics of the Lead (Pb)-free halide perovskite FrCaCl using both the GGA and hybrid HSE06 parameterized density functional theory (DFT). Since the FrCaCl cubic perovskite has not yet been synthesized experimentally, its structural and thermodynamic stabilities are confirmed by the Goldschmidt tolerance factor, the octahedral factor, and the formation energy. The induction of pressure has caused a simultaneous decrease in both the lattice parameters and the electronic band gap. Applying the hybrid HSE06 potential refines the accuracy of the band gap, with values decreasing from 5.705 to 2.618 eV from 0 to 150 GPa pressure, suggesting improved optoelectronic attributes. Employing pressure facilitates the formation of stronger chemical bonds characterized by reduced bond lengths. The investigation of optical functions demonstrates that with increased pressure ranging to 150 GPa, the optical conductivity along with the absorption coefficient is oriented towards the low-energy region. The FrCaCl perovskite has the prospect to be used in X-ray imaging and other fields of nuclear medicine and diagnostics as it contains the radioactive element Francium (Fr). Additionally, it is found via the study of mechanical characteristics that FrCaCl is mechanically stable under various applied pressure, and adding pressure makes it more ductile as well as more anisotropic.
在0至150吉帕的不同静水压力下,使用广义梯度近似(GGA)和杂化HSE06参数化密度泛函理论(DFT)进行了第一性原理计算,以研究无铅卤化物钙钛矿FrCaCl的结构、电子、键合、光学、弹性和力学特性。由于尚未通过实验合成FrCaCl立方钙钛矿,其结构和热力学稳定性通过戈尔德施密特容忍因子、八面体因子和形成能得到证实。压力的引入导致晶格参数和电子带隙同时减小。应用杂化HSE06势提高了带隙的精度,从0至150吉帕压力下,带隙值从5.705电子伏特降至2.618电子伏特,表明光电属性得到改善。施加压力有助于形成键长缩短的更强化学键。光学函数研究表明,随着压力增加至150吉帕,光导率和吸收系数都向低能区移动。FrCaCl钙钛矿由于含有放射性元素钫(Fr),有希望用于X射线成像以及核医学和诊断的其他领域。此外,通过力学特性研究发现,FrCaCl在各种施加压力下力学稳定,施加压力使其更具延展性且更具各向异性。