Giorgi Giacomo, Yamashita Koichi, Segawa Hiroshi
Dipartimento di Ingegneria Civile e Ambientale (DICA), Università degli Studi di Perugia, Via G. Duranti, 06125 Perugia, Italy.
Phys Chem Chem Phys. 2018 Apr 25;20(16):11183-11195. doi: 10.1039/c8cp01019f.
We have here performed a campaign of ab initio calculations focusing on the anchoring mechanism and adduct formation of some Lewis bases, both aliphatic and aromatic, on a PbI2-rich flat (001) methylammonium lead iodide (MAPI) surface. Our goal is to provide theoretical support to the recently reported experimental techniques of MAPI surface passivation via Lewis acid-base neutralization and similarly of MAI·PbI2·(Lewis base) adduct formation. We tested several X-donor bases (X = :N, :O, :S), paying attention to the thermodynamic stability of the final MAPI·base adducts and to their electronic properties. Factors that impact on the passivation mechanism are the directionality of the Lewis base lone pair and its enhanced/reduced overlap with MAPI Pb p orbitals, the dipole moment of the base and, similarly, the electronegativity of the X donor atom. Also non-covalent interactions, both at the surface side (intra, MAPI) and at the very interface (inter, MAPI·Lewis base), seem to contribute to the stability of the final adducts. Here we show that the thermodynamic stability does not necessarily correspond to the most effective base → acid dative bond formation. Starting from a low coverage (12.5% of the undercoordinated Pb atoms available at the surface are passivated) this paper paves the way towards the study of cooperative and steric effects among Lewis bases at higher coverages representing, to the best of our knowledge, one of the very first studies focusing on the molecular anchoring on the surfaces of this very important class of materials.
我们在此开展了一系列从头算计算,重点研究一些脂肪族和芳香族路易斯碱在富含PbI₂的平整(001)甲基碘化铅(MAPI)表面的锚定机制和加合物形成。我们的目标是为最近报道的通过路易斯酸碱中和实现MAPI表面钝化以及类似的MAI·PbI₂·(路易斯碱)加合物形成的实验技术提供理论支持。我们测试了几种X供体碱(X = :N、:O、:S),关注最终MAPI·碱加合物的热力学稳定性及其电子性质。影响钝化机制的因素包括路易斯碱孤对电子的方向性及其与MAPI Pb p轨道增强/减弱的重叠、碱的偶极矩以及类似地X供体原子的电负性。表面侧(MAPI内部)和界面处(MAPI·路易斯碱之间)的非共价相互作用似乎也对最终加合物的稳定性有贡献。我们在此表明,热力学稳定性不一定对应于最有效的碱→酸配位键形成。从低覆盖率(表面上未配位的Pb原子中有12.5%被钝化)开始,本文为研究更高覆盖率下路易斯碱之间的协同效应和空间效应铺平了道路,据我们所知,这是最早关注这类非常重要材料表面分子锚定的研究之一。