Towards Commercially Viable Non–Fullerene Organic Solar Cells: A Critical Review of Recent Developments in High-Performance Non–Fused Ring Electron …

ED Papkovskaya, DO Balakirev, J Min… - Materials Today …, 2024 - Elsevier
To achieve commercial viability, organic solar cells (OSCs) must balance efficiency, stability,
and cost. Currently, the most efficient OSCs are still based on fused ring electron acceptors …

Chlorinated Oligomers with Regulate Planarity Achieving Superior Photovoltaic Performance

X Shen, S Xiong, H Lai, Y Wang, H Li… - ACS Applied Materials …, 2024 - ACS Publications
Chlorine substitution, as an effective and low-cost modification strategy, has been applied in
the design of donor and acceptor structures in organic solar cells. We synthesized a series …

Tert-butyl carbazole modified non-fused ring electron acceptor generating high triplet state energy level for efficient organic solar cell

D Luo, L Zhang, J Zeng, T Dai, L Li, WY Wong, B Xu… - Nano Energy, 2024 - Elsevier
Two-dimensional side-chain plays a crucial role in the construction of efficient non-fused
ring electron acceptors (NFREAs). Herein, we introduce a novel NFREA, PCT-4Cl, featuring …

A brominated M3 based non-fullerene acceptor: synthesis, material and photovoltaic properties

E Zuccalà, S Mallick, LM Habich, H Amenitsch… - New Journal of …, 2024 - pubs.rsc.org
Molecular structure engineering has proved to be an efficient strategy to modify the
properties of photoactive materials for organic solar cells. Several studies focused on the …

Providing a Photovoltaic Performance Enhancement Relationship from Binary to Ternary Polymer Solar Cells via Machine Learning

J Cao, Z Xu - Polymers, 2024 - mdpi.com
Ternary polymer solar cells (PSCs) are currently the simplest and most efficient way to
further improve the device performance in PSCs. To find high-performance organic …