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Experimental and first-principles investigation of Cr-driven color change in cesium lead halide perovskites

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Date

2019

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American Institute of Physics Inc.

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Bronze

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No

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Abstract

Herein, we report room temperature Cr-doping for all-inorganic perovskites that have attracted great attention in recent years due to their extraordinary optical properties, low cost, and ease of synthesis. Incorporation of Cr 3 + ions into the perovskite crystal lattices is achieved by following a facile route involving an antisolvent recrystallization method at room temperature. It is shown that both Cr-doping and formation of crystals in the CsPbBr x Cl 3 - x phase are provided by increasing the concentration of the CrCl 3 solution. It is also observed that the doping procedure leads to the emergence of three types of distinctive peaks in the PL spectrum originating from CsPbBr x Cl 3 - x domains (476-427 nm), Cr-strained host lattices (515 nm), and midgap states formed by Cr dopants (675-775 nm). It is also found that the Cr-doped perovskites emitting a dark violaceous color change their color to white with a high color rendering index (88) in 30-day time intervals. Easy-tunable optical properties of all-inorganic Cs perovskites indicate their great potential for future optoelectronic device applications. © 2019 Author(s).

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Fields of Science

01040203 Catalysis/Chemical processes, 02 engineering and technology, 02100101 Nanoparticles/Emerging technologies, 010402 general chemistry, 021001 nanoscience & nanotechnology, 0210 nano-technology, 01 natural sciences, 0104 chemical sciences

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4

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OpenCitations Citation Count
3

Source

Journal of Applied Physics

Volume

125

Issue

22

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CrossRef : 3

Scopus : 4

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Mendeley Readers : 13

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