Role of microstructure in the electron–hole interaction of hybrid lead halide perovskites

被引:0
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作者
Giulia Grancini
Ajay Ram Srimath Kandada
Jarvist M. Frost
Alex J. Barker
Michele De Bastiani
Marina Gandini
Sergio Marras
Guglielmo Lanzani
Aron Walsh
Annamaria Petrozza
机构
[1] Center for Nano Science and Technology @Polimi,Centre for Sustainable Chemical Technologies and Department of Chemistry
[2] Istituto Italiano di Tecnologia,Dipartimento di Scienze Chimiche
[3] University of Bath,Dipartimento di Fisica
[4] Claverton Down,Department of Nanochemistry
[5] Università degli Studi di Padova,undefined
[6] Politecnico di Milano,undefined
[7] Piazza L. da Vinci,undefined
[8] 32,undefined
[9] Istituto Italiano di Tecnologia,undefined
来源
Nature Photonics | 2015年 / 9卷
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摘要
Organic–inorganic metal halide perovskites have demonstrated high power conversion efficiencies in solar cells and promising performance in a wide range of optoelectronic devices. The existence and stability of bound electron–hole pairs in these materials and their role in the operation of devices with different architectures remains a controversial issue. Here we demonstrate, through a combination of optical spectroscopy and multiscale modelling 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.
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页码:695 / 701
页数:6
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