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A 阳离子在无铅 ASnI 钙钛矿的多晶型稳定性和光电性能中的作用。

The role of the A-cations in the polymorphic stability and optoelectronic properties of lead-free ASnI perovskites.

作者信息

Ozório Mailde S, Srikanth Malladi, Besse Rafael, Da Silva Juarez L F

机构信息

São Carlos Institute of Chemistry, University of São Paulo, PO Box 780, 13560-970, São Carlos, São Paulo, Brazil.

出版信息

Phys Chem Chem Phys. 2021 Jan 28;23(3):2286-2297. doi: 10.1039/d0cp06090a.

Abstract

Tin-based ASnI3 perovskites have been considered excellent candidates for lead-free perovskite solar cell applications; however, our atomistic understanding of the role of the A-cations, namely, CH3NH3 (methylammonium, MA), CH3PH3 (methylphosphonium, MP) and CH(NH2)2 (formamidinium, FA), in the physical chemistry properties is far from satisfactory. For the first time, we report a density functional theory investigation of the MPSnI3 perovskite and non-perovskite phases as well as their comparison with the MASnI3 and FASnI3 phases, where we considered the role of the A-cation orientations in the structural stability of the ASnI3 phases. The orthorhombic structure is the most stable studied phase, which agrees with experimentally reported phase-transition trends. In contrast with the cation size and the weak hydrogen bonding interactions, which contribute to structural cohesion between the inorganic framework and A-cation, the dipole-dipole interactions play an important role to drive the structures to the lowest energy configurations. From our analysis, the inorganic framework dominates the optical properties, band structure, and density of states around the band edges. Broader absorption and smaller band gap energies occur for the perovskite structures compared to the low-dimensional hexagonal/pseudo-hexagonal non-perovskites.

摘要

锡基ASnI3钙钛矿被认为是无铅钙钛矿太阳能电池应用的优秀候选材料;然而,我们对A阳离子,即CH3NH3(甲铵,MA)、CH3PH3(甲鏻,MP)和CH(NH2)2(甲脒,FA)在物理化学性质中所起作用的原子层面理解还远远不够令人满意。我们首次报告了对MPSnI3钙钛矿和非钙钛矿相的密度泛函理论研究,以及它们与MASnI3和FASnI3相的比较,其中我们考虑了A阳离子取向对ASnI3相结构稳定性的作用。正交结构是所研究的最稳定相,这与实验报道的相变趋势一致。与有助于无机骨架和A阳离子之间结构凝聚的阳离子大小和弱氢键相互作用不同,偶极 - 偶极相互作用在驱动结构达到最低能量构型方面起着重要作用。通过我们的分析,无机骨架主导了带边附近的光学性质、能带结构和态密度。与低维六方/准六方非钙钛矿相比,钙钛矿结构具有更宽的吸收和更小的带隙能量。

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