Related Experiment Video
Updated: Jan 17, 2026

Monovalent Cation Doping of CH3NH3PbI3 for Efficient Perovskite Solar Cells
Published on: March 19, 2017
Computational modeling of novel perovskite oxides InXO3 (Be, Ca): Phase stable and sustainable materials for
Maaz Azeem1, Muhammad Khuram Shahzad1, Bekzod Matyakubov2
1Khwaja Fareed University of Engineering and Information Technology, Rahim Yar Khan, 64200, Pakistan.
Abstract:
Optoelectronics devices need improved performance, and there are challenges in achieving high efficiency. The perovskite compounds have become the center of attraction for their properties and characteristics. The studies on the double perovskite have gained attention due to its adjustable bandgap, better properties, and best optoelectronics applications. This study investigates the novel perovskite InXO3 (X = Be, Ca) for structural, electronic, mechanical, phonon, and optical properties by using DFT simulations. We calculated the characteristics of perovskite using the CASTEP simulations technique and LDA-CAPZ approximation. Achieved the cubic structure, negative formation energy (InBeO3 is -1.68 eV/atom & InCaO3 is -1.92 eV/atom), and tolerance factors (InBeO3 is 0.84 & InCaO3 is 0.88) of both perovskite compounds predicting the stability of the materials. The electronic property disclosed that the compounds have a metallic nature. For the electronic properties, the band gap of the InBeO3 compound is 4.05 eV. After elemental substitution, the band gap of the InCaO3 compound is reduced to 2.67 eV, which falls within the visible range and is most suitable for optoelectronics devices. The mechanical properties calculated on the positive values of coordinates C44, C11, and C12 show the stability of both structures of the compounds. The excellent optical properties are calculated by full polarization for absorption, conductivity, loss function, refractive index, dielectric function & loss function from the energy range that varies for both InBeO3 and InCaO3. The proposed results of novel perovskite InXO3 (X = Be, Ca) oxides are a potential candidate for optoelectronics applications such as photodetectors and LEDs devices.

