Grancini Giulia, Srimath Kandada Ajay Ram, Frost Jarvist M, Barker Alex J, De Bastiani Michele, Gandini Marina, Marras Sergio, Lanzani Guglielmo, Walsh Aron, Petrozza Annamaria
Center for Nano Science and Technology @Polimi, Istituto Italiano di Tecnologia, via Giovanni Pascoli 70/3, 20133, Milan, Italy.
Centre for Sustainable Chemical Technologies and Department of Chemistry, University of Bath, Claverton Down, Bath BA2 7AY, United Kingdom.
Nat Photonics. 2015 Oct 1;9(10):695-701. doi: 10.1038/nphoton.2015.151.
Solar cells based on hybrid inorganic-organic halide perovskites have demonstrated high power conversion efficiencies in a range of architectures. The existence and stability of bound electron-hole pairs in these materials, and their role in the exceptional performance of optoelectronic devices, remains a controversial issue. Here we demonstrate, through a combination of optical spectroscopy and multiscale modeling as a function of the degree of polycrystallinity and temperature, that the electron-hole interaction is sensitive to the microstructure of the material. The long-range order is disrupted by polycrystalline disorder and the variations in electrostatic potential found for smaller crystals suppress exciton formation, while larger crystals of the same composition demonstrate an unambiguous excitonic state. We conclude that fabrication procedures and morphology strongly influence perovskite behaviour, with both free carrier and excitonic regimes possible, with strong implications for optoelectronic devices.
基于无机-有机卤化物混合钙钛矿的太阳能电池在一系列结构中都展现出了高功率转换效率。这些材料中束缚电子-空穴对的存在与稳定性,以及它们在光电器件卓越性能中所起的作用,仍然是一个有争议的问题。在这里,我们通过结合光谱学和多尺度建模,研究了多晶度和温度的函数关系,结果表明电子-空穴相互作用对材料的微观结构敏感。多晶无序破坏了长程有序,较小晶体中发现的静电势变化抑制了激子形成,而相同组成的较大晶体则表现出明确的激子态。我们得出结论,制造工艺和形态对钙钛矿行为有强烈影响,自由载流子和激子机制都有可能出现,这对光电器件具有重要意义。