Lardhi Sheikha, Curutchet Antton, Cavallo Luigi, Harb Moussab, Le Bahers Tangui
King Abdullah University of Science and Technology (KAUST), KAUST Catalysis Center (KCC) and Physical Sciences and Engineering Division (PSE), 4700 KAUST, Thuwal, 23955-6900, Saudi Arabia.
Phys Chem Chem Phys. 2017 May 17;19(19):12321-12330. doi: 10.1039/c7cp01684k.
The investigation of the BiCuOCh (Ch = S, Se and Te) semiconductor family for thermoelectric or photovoltaic materials is a topic of increasing research interest. These materials can also be considered for photochemical water splitting if one representative having a bandgap, E, at around 2 eV can be developed. With this aim, we simulated the solid solutions BiRECuOS (RE = Y, La, Gd and Lu) from pure BiCuOS (E ∼ 1.1 eV) to pure RECuOS compositions (E ∼ 2.9 eV) by DFT calculations based on the HSE06 range-separated hybrid functional with the inclusion of spin-orbit coupling. Starting from the thermodynamic stability of the solid solution, several properties were computed for each system including bandgaps, dielectric constants, effective masses and exciton binding energies. We discussed the variation of these properties based on the relative organization of Bi and RE atoms in their common sublattice to offer a physical understanding of the influence of the RE doping of BiCuOS. Some compositions were found to give appropriate properties for water splitting applications. Furthermore, we found that at low RE fractions the transport properties of BiCuOS are improved that can find applications beyond water splitting.
对BiCuOCh(Ch = S、Se和Te)半导体家族用于热电或光伏材料的研究是一个越来越受关注的研究课题。如果能开发出一种带隙E约为2 eV的代表性材料,这些材料也可用于光化学水分解。出于这个目的,我们基于包含自旋轨道耦合的HSE06范围分离混合泛函,通过密度泛函理论(DFT)计算,模拟了从纯BiCuOS(E ∼ 1.1 eV)到纯RECuOS组成(E ∼ 2.9 eV)的固溶体BiRECuOS(RE = Y、La、Gd和Lu)。从固溶体的热力学稳定性出发,计算了每个体系的几个性质,包括带隙、介电常数、有效质量和激子结合能。我们基于Bi和RE原子在其共同亚晶格中的相对排列讨论了这些性质的变化,以从物理角度理解RE掺杂对BiCuOS的影响。发现一些组成具有适合水分解应用的性质。此外,我们发现,在低RE含量下,BiCuOS的输运性质得到改善,这在水分解之外也有应用。