Ong Khuong P, Goh Teck Wee, Xu Qiang, Huan Alfred
Institute of High Performance Computing, Agency of Science, Technology and Research (A*STAR) , 1 Fusionopolis Way, 138632 Singapore.
Division of Physics and Applied Physics, School of Physical and Mathematical Sciences, Nanyang Technological University , 21 Nanyang Link, 637371 Singapore.
J Phys Chem A. 2015 Nov 5;119(44):11033-8. doi: 10.1021/acs.jpca.5b09884. Epub 2015 Oct 22.
The organic-inorganic hybrid perovskite, in particular, methylammonium lead iodide (MAPbI3), is currently a subject of intense study due to its desirability in making efficient photovoltaic devices economically. It is known that MAPbI3 undergoes structural phase transitions from orthorhombic Pnma to tetragonal I4/mcm at ∼170 K and then to cubic Pm3̅m at ∼330 K. A tetragonal P4mm phase is also reported at 400 K considering total cation disorder is not appealing due to its hydrogen-bonding capabilities. Resolving this ambiguity of phase transition necessitates the study of the structural evolution across these phases in our work using ab initio methods. In this work, we show that the structural phase evolves from Pnma to I4/mcm to P4mm to Pm3̅m with increasing volume. The P4mm phase is a quasi-cubic one with slight distortion in one direction from cubic Pm3̅m due to the rotation of MA cations. Biaxial strain on MAPbI3 reveals that only the Pnma and P4mm phases are energetically stable at a < 9.14 Å and a > 9.14 Å, respectively. The Pnma, I4/mcm, P4mm, and Pm3̅m phases can be stable under various uniaxial strain conditions. Our study provides a clear understanding of the structural phase transitions that occur in MAPbI3 and provides a guide for the epitaxial growth of specific phases under various strain conditions.
特别是有机-无机杂化钙钛矿,即甲基碘化铅(MAPbI3),由于其在经济上制造高效光伏器件方面的优势,目前是深入研究的对象。已知MAPbI3在约170 K时从正交Pnma结构相转变为四方I4/mcm结构相,然后在约330 K时转变为立方Pm3̅m结构相。考虑到由于其氢键能力导致的总阳离子无序,在400 K时也报道了四方P4mm相。在我们的工作中,使用从头算方法研究这些相之间的结构演变,对于解决这种相变的模糊性是必要的。在这项工作中,我们表明随着体积增加,结构相从Pnma演变为I4/mcm,再到P4mm,最后到Pm3̅m。P4mm相是一种准立方相,由于MA阳离子的旋转,在一个方向上相对于立方Pm3̅m有轻微畸变。对MAPbI3施加双轴应变表明,只有Pnma相和P4mm相分别在晶格常数a < 9.14 Å和a > 9.14 Å时在能量上是稳定的。Pnma、I4/mcm、P4mm和Pm3̅m相在各种单轴应变条件下都可以是稳定的。我们的研究为MAPbI3中发生的结构相变提供了清晰的理解,并为在各种应变条件下特定相的外延生长提供了指导。