Application of isoindigo-based small molecule conjugated electrolytes at interfaces with organic solar cells

T Shang, Y Qiu, C Cui, L Zeng, M Yang, S Fu… - Materials Today …, 2024 - Elsevier
Zwitterionic small molecule materials are widely employed in the cathode interface layer of
organic solar cells (OSCs). Nevertheless, the exploration of superior cathode interface …

Additive-induced intermolecular interaction enhancement enables highly efficient organic solar cells

C Chen, D Hu, P Huang, CH Mak, H Liu… - Journal of Materials …, 2024 - pubs.rsc.org
Morphology optimization is a critical factor for achieving high power conversion efficiency
(PCE) in organic solar cells (OSCs). Herein, a simple yet effective solvent additive-induced …

Synergistically Halogenated and Methoxylated Thiophene Additive Enables High‐Performance Organic Solar Cells

X Jiang, P Huang, K Tu, L Liu, C Chen, Y Li, H Lei, F Yu… - Small, 2025 - Wiley Online Library
Morphology control plays a key role for improving efficiency and stability of bulk
heterojunctions (BHJ) organic solar cells (OSCs). Halogenation and methoxylation are two …

Electron Transporting Polymeric Materials with Partial Quaternization for High‐Performance Organic Solar Cells

H Lei, F Yu, C Chen, Y Li, D Hu, Y Chen… - Macromolecular …, 2024 - Wiley Online Library
Efficient cathode interfacial layers (CILs) have become a crucial component of organic solar
cells (OSCs). Charge extraction barriers, interfacial trap states, and significant transport …

Fluorination or Not in Small Molecule Solar Cells: Achieving a Higher Efficiency with Halogen‐Free End Group

Y Chen, G Tian, P Huang, D Hu… - Chemistry–A European …, 2024 - Wiley Online Library
Fluorination is an efficient strategy for improving organic solar cells (OSCs) efficiency,
particularly by fluorinating the end group of emerging nonfullerene acceptors. Here, the …