Alhashmi Afnan, Kanoun Mohammed Benali, Goumri-Said Souraya
Department of Physics, College of Science, King Faisal University, P.O. Box 400, Al-Ahsa 31982, Saudi Arabia.
Department of Mathematics and Sciences, College of Humanities and Sciences, Prince Sultan University, P.O. Box 66833, Riyadh 11586, Saudi Arabia.
Materials (Basel). 2023 Mar 27;16(7):2657. doi: 10.3390/ma16072657.
The exact control of material properties essential for solar applications has been made possible because of perovskites' compositional engineering. However, tackling efficiency, stability, and toxicity at the same time is still a difficulty. Mixed lead-free and inorganic perovskites have lately shown promise in addressing these problems, but their composition space is vast, making it challenging to find good candidates even with high-throughput approaches. We investigated two groups of halide perovskite compound data with the ABX formula to investigate the formation energy data for 81 compounds. The structural stability was analyzed over 63 compounds. For these perovskites, we used new library data extracted from a calculation using generalized-gradient approximation within the Perdew-Burke-Ernzerhof (PBE) functional established on density functional theory. As a second step, we built machine learning models, based on a kernel-based naive Bayes algorithm that anticipate a variety of target characteristics, including the mixing enthalpy, different octahedral distortions, and band gap calculations. In addition to laying the groundwork for observing new perovskites that go beyond currently available technical uses, this work creates a framework for finding and optimizing perovskites in a photovoltaic application.
由于钙钛矿的成分工程,实现对太阳能应用至关重要的材料特性的精确控制已成为可能。然而,同时解决效率、稳定性和毒性问题仍然是一个难题。混合无铅和无机钙钛矿最近在解决这些问题方面显示出了前景,但它们的成分空间广阔,即使采用高通量方法,找到合适的候选材料也具有挑战性。我们研究了两组具有ABX化学式的卤化物钙钛矿化合物数据,以研究81种化合物的形成能数据。对63种化合物的结构稳定性进行了分析。对于这些钙钛矿,我们使用了从基于密度泛函理论建立的Perdew-Burke-Ernzerhof(PBE)泛函的计算中提取的新库数据。第二步,我们基于基于核的朴素贝叶斯算法构建了机器学习模型,该模型可以预测各种目标特性,包括混合焓、不同的八面体畸变和带隙计算。除了为观察超越当前可用技术用途的新型钙钛矿奠定基础外,这项工作还创建了一个在光伏应用中寻找和优化钙钛矿的框架。