Ultrafast charge dynamics of diketopyrrolopyrrole-based terpolymers for optoelectronic applications: impact of acceptor concentrations and thermal annealing
Journal article, 2026

Diketopyrrolopyrrole (DPP)-based terpolymers have emerged as promising donor materials for organic solar cells (OSCs), offering tunable optoelectronic properties, broadband absorption, and enhanced morphological stability through random terpolymerization strategies. This study investigates the ultrafast charge carrier dynamics of three DPP-based terpolymers, (P1–P3), incorporating different ratios of fluorobenzotriazole (FTAZ) and thienothiophene-capped DPP (TTDPP) acceptors. Using femtosecond transient absorption spectroscopy, we examine how acceptor ratios and thermal annealing influence photophysical processes in pristine terpolymers and their bulk heterojunction blends with PC71BM. Increasing the TTDPP content enhances backbone planarity, π–π stacking, and charge delocalization, thereby reducing recombination losses and promoting efficient charge separation. Compared to P2 and P3, the P1 terpolymer, with the highest TTDPP ratio, exhibits the most favorable intramolecular charge transfer kinetics and balanced carrier mobilities, consistent with its superior photovoltaic performance. Thermal annealing, however, reduces long-lived charge populations in all blends due to fullerene aggregation, which diminishes phase separation. These findings highlight how rational tuning of acceptor ratios in DPP-based terpolymers provides a pathway toward optimizing both efficiency and stability in OSCs.

Author

Leonato Tambua Nchinda

University of Pretoria

Zewdneh Genene Wolkeba

Chalmers, Chemistry and Chemical Engineering, Applied Chemistry

W. Mammo

Addis Ababa University

Newayemedhin A. Tegegne

Addis Ababa University

Dirk M. Guldi

University of Erlangen-Nuremberg (FAU)

Tjaart P.J. Krüger

University of Pretoria

Nanoscale

2040-3364 (ISSN) 2040-3372 (eISSN)

Vol. 18 27 14635-14647

Subject Categories (SSIF 2025)

Materials Chemistry

Polymer Chemistry

Other Chemistry Topics

DOI

10.1039/d6nr00012f

PubMed

42300911

Related datasets

Supplementary data [dataset]

URI: https://doi.org/10.1039/d6nr00012f

More information

Latest update

8/3/2026 8