Design of Lead-Free Inorganic Halide Perovskites for Solar Cells via Cation-Transmutation
arXiv:1705.10014 · doi:10.1021/jacs.6b09645
Abstract
Hybrid organic-inorganic halide perovskites with the prototype material of CHNHPbI have recently attracted intense interest as low-cost and high-performance photovoltaic absorbers. Despite the high power conversion efficiency exceeding 20% achieved by their solar cells, two key issues -- the poor device stabilities associated with their intrinsic material instability and the toxicity due to water soluble Pb -- need to be resolved before large-scale commercialization. Here, we address these issues by exploiting the strategy of cation-transmutation to design stable inorganic Pb-free halide perovskites for solar cells. The idea is to convert two divalent Pb ions into one monovalent M and one trivalent M ions, forming a rich class of quaternary halides in double-perovskite structure. We find through first-principles calculations this class of materials have good phase stability against decomposition and wide-range tunable optoelectronic properties. With photovoltaic-functionality-directed materials screening, we identify eleven optimal materials with intrinsic thermodynamic stability, suitable band gaps, small carrier effective masses, and low excitons binding energies as promising candidates to replace Pb-based photovoltaic absorbers in perovskite solar cells. The chemical trends of phase stabilities and electronic properties are also established for this class of materials, offering useful guidance for the development of perovskite solar cells fabricated with them.
pages 19, 4 figures in main text
References in corpus (2)
Cited by in corpus (14)
- Metal Halide Perovskite Nanocrystals: Synthesis, Post-Synthesis Modifications and Their Optical Properties
- An invertible crystallographic representation for general inverse design of inorganic crystals with targeted properties
- Materials Discovery of Stable and Nontoxic Halide Perovskite Materials for High-Efficiency Solar Cells
- Indirect band gap semiconductors for thin-film photovoltaics: High-throughput calculation of phonon-assisted absorption
- Structure-Composition-Property Relationships in Antiperovskite Nitrides: Guiding a Rational Alloy Design
- Chemical Mapping of Excitons in Halide Double Perovskites
- Discovery of the Zintl-phosphide BaCdP as a long carrier lifetime and stable solar absorber
- Assessing carrier mobility, dopability, and defect tolerance in the chalcogenide perovskite BaZrS
- High-Throughput Screening for Band gap Engineering by Sublattice Mixing of CsAgBiCl from First-Principles
- Inorganic Crystal Structure Prototype Database based on Unsupervised Learning of Local Atomic Environments
- Space Group Informed Transformer for Crystalline Materials Generation
- MATGANIP: Learning to Discover the Structure-Property Relationship in Perovskites with Generative Adversarial Networks
- Unveiling the impact of trivalent metal cation transmutation on CsAgM(III)Cl double perovskites using many-body perturbation theory
- A Nanocrystal Synthesis Derived Approach to Silver Bismuth Iodide Layered Double Perovskites with Aliphatic Amines: (CnH(2n+1)NH3)4AgBiI8