Determination of Gibbs Free Energy in the Compound Formation of Li-P and Li-Fe-O by Pymatgen

A. Yuniati, Syamsul Andry
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Abstract

The Gibbs free energy of the compound formation from a phase diagram based on Python Materials Genomic (Pymatgen) and Application Programming Interface (API) Key had been determined. The compounds shown were stable synthesized from the combination of Li-P and Li-Fe-O atoms. This stability was indicated by the value of the Gibbs free energy of the compounds formation obtained from the phase diagram of each atomic combination. The diagram was created from the integration between Python and the database from the Materials Project via an API Key using Pymatgen. From the research conducted for the combination of Li-P atoms, compounds and the Gibbs free energy of formation shown were Li3 P (-0.697 eV/atom), LiP (-0.523 eV/atom), Li3 P7 (-0.36 eV/atom), and LiP7 (-0.159 eV/atom). For Li-Fe-O combination, the compound and the energy were Li5 FeO4 (-2.117 eV/atom), LiFeO2 (-2.072 eV/atom), LiO2 (-2.067 eV/atom), Li2 FeO2 (-1.979 eV/atom), Li2 FeO3 (-1.965 eV/atom), Fe2 O3 (-1.907 eV/atom), Fe3 O4 (-1.858 eV/atom), FeO (-1.728 eV/atom), Li2 O2 (-1.651 eV/atom), and LiO8 (-0.414 eV/atom). The most stable compound from each formation was the compound with the lowest Gibbs energy, i.e Li3 P and Li5 FeO4.
用Pymatgen法测定Li-P和Li-Fe-O合成过程中的吉布斯自由能
基于Python Materials genomics (Pymatgen)和Application Programming Interface (API) Key,通过相图确定了化合物形成的Gibbs自由能。所示化合物是由Li-P和Li-Fe-O原子合成的稳定化合物。这种稳定性是通过从每个原子组合的相图中得到的化合物形成的吉布斯自由能值来表示的。这个图表是通过使用Pymatgen的API Key将Python和来自Materials Project的数据库集成在一起创建的。通过对Li-P原子结合的研究,得到了li3p (-0.697 eV/原子)、LiP (-0.523 eV/原子)、li3p7 (-0.36 eV/原子)和LiP7 (-0.159 eV/原子)的吉布斯自由生成能。对于Li-Fe-O组合,化合物和能量分别为Li5 FeO4 (-2.117 eV/原子)、LiFeO2 (-2.072 eV/原子)、LiO2 (-2.067 eV/原子)、Li2 FeO2 (-1.979 eV/原子)、Li2 FeO3 (-1.907 eV/原子)、Fe3 O4 (-1.858 eV/原子)、FeO (-1.728 eV/原子)、Li2 O2 (-1.651 eV/原子)和LiO8 (-0.414 eV/原子)。每种形成中最稳定的化合物是吉布斯能最低的化合物,即li3p和li5feo4。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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