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Using Combinatorial Inkjet Printing for Synthesis and Deposition of Metal Halide Perovskites in Wavelength‐Selective Photodetectors

Authors :
Giovanni Ligorio
Felix Hermerschmidt
Emil J. W. List-Kratochvil
Hampus Näsström
Carolin Rehermann
Sabrina Helper
Eva L. Unger
Vincent R. F. Schröder
Source :
Advanced Engineering Materials. 24:2101111
Publication Year :
2021
Publisher :
Wiley, 2021.

Abstract

Metal halide perovskites have received great attention in recent years, predominantly due to the high performance of perovskite solar cells. The versatility of the material, which allows the tunability of the bandgap, has led to its use in light emitting diodes, photo, and X ray detectors, among other optoelectronic device applications. Specifically in photodetectors, the tunability of the bandgap allows fabrication of spectrally selective devices. Utilizing a combinatorial inkjet printing approach, multiple perovskite compositions absorbing at specific wavelengths in a single printing step are fabricated. The drop on demand capabilities of inkjet printing enable the deposition of inks in a precise ratio to produce specific perovskite compositions in the printed thin film. By controlling the halide ratio in the compositions, a mixed halide gradient ranging from pure MAPbI3 via MAPbBr3 to MAPbCl3 is produced. The tunability in the absorption onset from 410 to 790 amp; 8201;nm is demonstrated, covering the whole visible spectrum, with a precision of 8 amp; 8201;nm steps for MAPb BrxCl1 amp; 8722;x 3 compositions. From this range of mixed halide perovskites, photodetectors which show spectral selectivity corresponding to the measured absorption onset are demonstrated, paving the way for use in a printed visible light spectrometer without the need for a dispersion element

Details

ISSN :
15272648 and 14381656
Volume :
24
Database :
OpenAIRE
Journal :
Advanced Engineering Materials
Accession number :
edsair.doi.dedup.....42594789ce7d09c38f03a2ca09aa6e27
Full Text :
https://doi.org/10.1002/adem.202101111