Perovskite Materials for Light‐Emitting Diodes and Lasers
Перовскитные материалы для светоизлучающих диодов и лазеров
2016-05-23
SCID: 54.1/5qq8zfng
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light-emitting diodesoperational stabilityperovskite lasersperovskite materialsphotoluminescence quantum yield
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Abstract (AI)
Organic-inorganic hybrid perovskites have cemented their position as an exceptional class of optoelectronic materials thanks to record photovoltaic efficiencies of 22.1%, as well as promising demonstrations of light-emitting diodes, lasers, and light-emitting transistors. Perovskite materials with photoluminescence quantum yields close to 100% and perovskite light-emitting diodes with external quantum efficiencies of 8% and current efficiencies of 43 cd A(-1) have been achieved. Although perovskite light-emitting devices are yet to become industrially relevant, in merely two years these devices have achieved the brightness and efficiencies that organic light-emitting diodes accomplished in two decades. Further advances will rely decisively on the multitude of compositional, structural variants that enable the formation of lower-dimensionality layered and three-dimensional perovskites, nanostructures, charge-transport materials, and device processing with architectural innovations. Here, the rapid advancements in perovskite light-emitting devices and lasers are reviewed. The key challenges in materials development, device fabrication, operational stability are addressed, and an outlook is presented that will address market viability of perovskite light-emitting devices.
Key Findings
1
Further progress depends on compositional and structural engineering, including lower-dimensional and three-dimensional perovskites, nanostructures, charge-transport materials, and innovative device architectures.
2
Key unresolved challenges include materials development, device fabrication, operational stability, and establishing market viability.
3
Organic–inorganic hybrid perovskites have demonstrated strong optoelectronic performance, including 22.1% photovoltaic efficiency and promising LEDs, lasers, and light-emitting transistors.
4
Perovskite LEDs have reached external quantum efficiencies of 8% and current efficiencies of 43 cd A⁻¹.
5
Perovskite materials have achieved photoluminescence quantum yields approaching 100%, indicating highly efficient radiative emission.
6
Within approximately two years, perovskite LEDs achieved brightness and efficiencies comparable to those developed by organic LEDs over two decades, despite lacking industrial relevance.
Research Object
Organic-inorganic hybrid perovskite materials and perovskite light-emitting devices and lasers
Research Subject
Recent advances, material and structural design, device performance, fabrication challenges, and operational stability of perovskite light-emitting devices and lasers
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2016-05-23
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