Intriguing Optoelectronic Properties of Metal Halide Perovskites

Интригующие оптоэлектронные свойства галогенидных перовскитов металлов
Prashant V. Kamat, Jeffrey A. Christians, Joseph S. Manser
2016-06-21

carrier dynamics and transportmetal halide perovskitesmethylammonium lead iodideoptoelectronic propertiesphotovoltaic absorbers
Abstract A new chapter in the long and distinguished history of perovskites is being written with the breakthrough success of metal halide perovskites (MHPs) as solution-processed photovoltaic (PV) absorbers. The current surge in MHP research has largely arisen out of their rapid progress in PV devices; however, these materials are potentially suitable for a diverse array of optoelectronic applications. Like oxide perovskites, MHPs have ABX3 stoichiometry, where A and B are cations and X is a halide anion. Here, the underlying physical and photophysical properties of inorganic (A = inorganic) and hybrid organic?inorganic (A = organic) MHPs are reviewed with an eye toward their potential application in emerging optoelectronic technologies. Significant attention is given to the prototypical compound methylammonium lead iodide (CH3NH3PbI3) due to the preponderance of experimental and theoretical studies surrounding this material. We also discuss other salient MHP systems, including 2-dimensional compounds, where relevant. More specifically, this review is a critical account of the interrelation between MHP electronic structure, absorption, emission, carrier dynamics and transport, and other relevant photophysical processes that have propelled these materials to the forefront of modern optoelectronics research.
1
Both inorganic and hybrid organic–inorganic MHPs, including two-dimensional compounds, are considered as relevant material platforms for optoelectronics.
2
Metal halide perovskites have achieved rapid success as solution-processed photovoltaic absorbers, driving a major expansion of research.
3
Methylammonium lead iodide (CH3NH3PbI3) is the principal model system because it has been extensively studied experimentally and theoretically.
4
The review critically connects electronic structure with optical absorption, emission, carrier dynamics, transport, and other photophysical processes governing MHP performance.
5
Their ABX3 structural framework and tunable physical properties make MHPs promising for diverse emerging optoelectronic applications beyond photovoltaics.

Metal halide perovskites (MHPs), particularly methylammonium lead iodide (CH3NH3PbI3) and related inorganic, hybrid organic–inorganic, and two-dimensional compounds

The interrelation of electronic structure, optical absorption and emission, carrier dynamics and transport, and other photophysical properties relevant to optoelectronic applications

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2016-06-21
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Prashant V. Kamat
Jeffrey A. Christians
Joseph S. Manser
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