Nanocrystals of Cesium Lead Halide Perovskites (CsPbX 3 , X = Cl, Br, and I): Novel Optoelectronic Materials Showing Bright Emission with Wide Color Gamut

Нанокристаллы галогенидных перовскитов свинца и цезия (CsPbX₃, X = Cl, Br и I): новые оптоэлектронные материалы с яркой эмиссией и широким цветовым охватом
Christopher H. Hendon, Sergii Yakunin, Maksym V. Kovalenko, Aron Walsh, Loredana Proteşescu, Maryna I. Bodnarchuk, Franziska Krieg, Riccarda Caputo, Ruoxi Yang
2015-01-29

CsPbX3 nanocrystalscesium lead halide perovskitescolloidal quantum dotstunable photoluminescencewide color gamut
Metal halides perovskites, such as hybrid organic-inorganic CH3NH3PbI3, are newcomer optoelectronic materials that have attracted enormous attention as solution-deposited absorbing layers in solar cells with power conversion efficiencies reaching 20%. Herein we demonstrate a new avenue for halide perovskites by designing highly luminescent perovskite-based colloidal quantum dot materials. We have synthesized monodisperse colloidal nanocubes (4-15 nm edge lengths) of fully inorganic cesium lead halide perovskites (CsPbX3, X = Cl, Br, and I or mixed halide systems Cl/Br and Br/I) using inexpensive commercial precursors. Through compositional modulations and quantum size-effects, the bandgap energies and emission spectra are readily tunable over the entire visible spectral region of 410-700 nm. The photoluminescence of CsPbX3 nanocrystals is characterized by narrow emission line-widths of 12-42 nm, wide color gamut covering up to 140% of the NTSC color standard, high quantum yields of up to 90%, and radiative lifetimes in the range of 1-29 ns. The compelling combination of enhanced optical properties and chemical robustness makes CsPbX3 nanocrystals appealing for optoelectronic applications, particularly for blue and green spectral regions (410-530 nm), where typical metal chalcogenide-based quantum dots suffer from photodegradation.
1
Compositional tuning and quantum-size effects enable CsPbX3 nanocrystal bandgaps and emission spectra to span the entire visible range from 410 to 700 nm.
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CsPbX3 nanocrystals provide a wide color gamut covering up to 140% of the NTSC color standard.
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The nanocrystals exhibit narrow photoluminescence linewidths of 12–42 nm, quantum yields up to 90%, and radiative lifetimes of 1–29 ns.
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The study synthesizes monodisperse colloidal nanocubes of fully inorganic CsPbX3 perovskites, measuring 4–15 nm in edge length, from inexpensive commercial precursors.
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Their strong optical performance and chemical robustness make them promising for optoelectronics, especially blue and green emission at 410–530 nm where metal-chalcogenide quantum dots often photodegrade.

Monodisperse colloidal nanocubes of fully inorganic cesium lead halide perovskites (CsPbX3, X = Cl, Br, I and mixed halides)

The composition- and quantum-size-dependent optoelectronic and photoluminescence properties of CsPbX3 nanocrystals, including tunable bandgaps and emission spectra, emission linewidth, color gamut, quantum yield, radiative lifetime, and chemical robustness

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2015-01-29
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Christopher H. Hendon
Sergii Yakunin
Maksym V. Kovalenko
Aron Walsh
Loredana Proteşescu
Maryna I. Bodnarchuk
Franziska Krieg
Riccarda Caputo
Ruoxi Yang
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