Please use this identifier to cite or link to this item: http://hdl.handle.net/1942/41572
Title: Structurally Pure and Reproducible Polymer Materials for High-Performance Organic Solar Cells
Authors: SMEETS, Sander 
LIU, Quan 
VANDERSPIKKEN, Jochen 
Quill, Tyler James
GIELEN, Sam 
LUTSEN, Laurence 
VANDEWAL, Koen 
MAES, Wouter 
Issue Date: 2023
Publisher: AMER CHEMICAL SOC
Source: CHEMISTRY OF MATERIALS, 35 (19) , p. 8158 -8169
Abstract: The commercial uptake of (polymer-based) organic solar cells is among others hindered by poor reproducibility of the device performance, arising from the variability in molar mass distribution and the presence of structural defects in push-pull conjugated polymers. Traditional "in-flask" synthesis methods and commonly used catalysts contribute to these issues. Flow chemistry has been proposed to provide consistent molar masses, while a recently applied Buchwald catalyst shows promise for reduced structural defect formation. However, this catalyst has not been used for donor polymers affording state-of-the-art efficiencies in organic solar cells, such as PM6 and D18. In this work, we utilize these two polymers as model systems to probe the effect of different synthetic conditions and examine the precise chemical structures, including any homocoupled defects present, by matrix-assisted laser desorption/ionization time-of-flight (MALDI-ToF) mass spectrometry. Additionally, we analyze how these structural factors impact the material and device properties. By combining droplet-flow chemistry and defect-free synthesis, we demonstrate a reproducible and scalable protocol for the synthesis of donor polymers with a tailorable molar mass for high-efficiency organic photovoltaics.
Notes: Maes, W (corresponding author), Hasselt Univ, Inst Mat Res IMO, B-3590 Diepenbeek, Belgium.; Maes, W (corresponding author), IMEC, Associated Lab IMOMEC, B-3590 Diepenbeek, Belgium.; Maes, W (corresponding author), Energyville, BE-3600 Genk, Belgium.
wouter.maes@uhasselt.be
Document URI: http://hdl.handle.net/1942/41572
ISSN: 0897-4756
e-ISSN: 1520-5002
DOI: 10.1021/acs.chemmater.3c01646
ISI #: 001071392700001
Rights: 2023 American Chemical Society
Category: A1
Type: Journal Contribution
Appears in Collections:Research publications

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