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MAPbI3 Solar Cells with Absorber Deposited by Resonant Infrared Matrix-Assisted Pulsed Laser Evaporation AITranslate

Duke University
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Publisher: ACS
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Abstract AITranslate

Resonant infrared, matrix-assisted pulsed laser evaporation (RIR-MAPLE) is a gentle thin-film deposition technique that combines the facile chemical control of solution processing with the growth control of vapor-phase deposition, yet one that has not been widely applied to crystalline organic–inorganic hybrid materials. In this work, we investigate the optoelectronic quality of RIR-MAPLE-deposited CH3NH3PbI3 (MAPbI3) perovskite films and report on the fabrication of perovskite solar cells in which the absorber is deposited by RIR-MAPLE. We find the composition, morphology, and optical properties of these perovskite films to be comparable to those produced by more conventional methods, such as spin coating. The champion device reaches a stabilized power conversion efficiency of over 12%, a high value for perovskite solar cells deposited by a laser ablation process, highlighting the ability of this new technique to produce device-quality films.

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DOI:https://doi.org/10.1021/acsenergylett.7b01144

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Citation Information:

Resonant infrared, matrix-assisted pulsed laser evaporation (RIR-MAPLE) is a gentle thin-film deposition technique that combines the facile chemical control of solution processing with the growth control of vapor-phase deposition, yet one that has not been widely applied to crystalline organic–inorganic hybrid materials. In this work, we investigate the optoelectronic quality of RIR-MAPLE-deposited CH3NH3PbI3 (MAPbI3) perovskite films and report on the fabrication of perovskite solar cells in which the absorber is deposited by RIR-MAPLE. We find the composition, morphology, and optical properties of these perovskite films to be comparable to those produced by more conventional methods, such as spin coating. The champion device reaches a stabilized power conversion efficiency of over 12%, a high value for perovskite solar cells deposited by a laser ablation process, highlighting the ability of this new technique to produce device-quality films.

quote

GB/T 7714-2015 [1] David B. Mitzi. ACS Energy Letters, 2018(3). DOI:10.1021/acsenergylett.7b01144.
MLA [1] David B. Mitzi. ACS Energy Letters, no. 3, 2018, https://doi.org/10.1021/acsenergylett.7b01144.
APA [1] David B. Mitzi. (2018). ACS Energy Letters(3). https://doi.org/10.1021/acsenergylett.7b01144
IEEE [1] David B. Mitzi, ACS Energy Letters, no. 3, 2018, doi: 10.1021/acsenergylett.7b01144.