Halide Perovskite Photovoltaics: Background, Status, and Future Prospects

Фотоэлектрические устройства на основе галогенидных перовскитов: предпосылки, современное состояние и перспективы
Tsutomu Miyasaka, Ajay Kumar Jena, Ashish Kulkarni
2019-03-01

X-ray detectorscompositional engineeringenvironmental stabilityhalide perovskite photovoltaicsperovskite solar cells
The photovoltaics of organic-inorganic lead halide perovskite materials have shown rapid improvements in solar cell performance, surpassing the top efficiency of semiconductor compounds such as CdTe and CIGS (copper indium gallium selenide) used in solar cells in just about a decade. Perovskite preparation via simple and inexpensive solution processes demonstrates the immense potential of this thin-film solar cell technology to become a low-cost alternative to the presently commercially available photovoltaic technologies. Significant developments in almost all aspects of perovskite solar cells and discoveries of some fascinating properties of such hybrid perovskites have been made recently. This Review describes the fundamentals, recent research progress, present status, and our views on future prospects of perovskite-based photovoltaics, with discussions focused on strategies to improve both intrinsic and extrinsic (environmental) stabilities of high-efficiency devices. Strategies and challenges regarding compositional engineering of the hybrid perovskite structure are discussed, including potentials for developing all-inorganic and lead-free perovskite materials. Looking at the latest cutting-edge research, the prospects for perovskite-based photovoltaic and optoelectronic devices, including non-photovoltaic applications such as X-ray detectors and image sensing devices in industrialization, are described. In addition to the aforementioned major topics, we also review, as a background, our encounter with perovskite materials for the first solar cell application, which should inspire young researchers in chemistry and physics to identify and work on challenging interdisciplinary research problems through exchanges between academia and industry.
1
Compositional engineering offers routes toward more stable all-inorganic and lead-free perovskites, while related materials show potential for X-ray detection and image sensing.
2
Improving intrinsic material stability and extrinsic environmental stability is identified as a central requirement for practical perovskite photovoltaics.
3
Organic–inorganic lead halide perovskite solar cells improved rapidly, surpassing the highest efficiencies of established CdTe and CIGS photovoltaics within about a decade.
4
Research has advanced across nearly all aspects of perovskite solar cells, revealing distinctive hybrid-perovskite properties and enabling high-efficiency devices.
5
Simple, inexpensive solution-based preparation gives perovskite thin-film photovoltaics strong potential as a low-cost alternative to current commercial technologies.

halide perovskite photovoltaic materials and devices

fundamentals, performance improvement, intrinsic and environmental stability, compositional engineering, and industrialization prospects of perovskite photovoltaics and related optoelectronic devices

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2019-03-01
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Tsutomu Miyasaka
Ajay Kumar Jena
Ashish Kulkarni
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