Indoor organic photovoltaics for low-power internet of things devices: Recent advances, challenges, and prospects

X Liu, S Xu, B Tang, X Song - Chemical Engineering Journal, 2024 - Elsevier
With the advent of the intelligent era, especially the Internet of Things (IoTs), the demand for
electricity in the indoor atmosphere is accelerated for the continuous output of intensified …

Progress in the Stability of Small Molecule Acceptor‐Based Organic Solar Cells

H Xu, J Han, A Sharma, SHK Paleti… - Advanced …, 2025 - Wiley Online Library
Significant advancements in power conversion efficiency have been achieved in organic
solar cells with small molecule acceptors. However, stability remains a primary challenge …

Self-Assembled Monolayer Engineered ZnO Electron Transport Layer to Improve the Photostability of Organic Solar Cells

KG Gebremariam, FG Hone, A Negash, Z Genene… - Energy & …, 2024 - ACS Publications
The degradation of organic solar cells (OSCs) can occur in any of the layers, underlining the
importance of each layer in prolonging their lifetime. To enhance the performance and …

Inner/Outer Side Chain Engineering of Non‐Fullerene Acceptors for Efficient Large‐Area Organic Solar Modules Based on Non‐Halogenated Solution Processing in …

S Zahra, S Lee, M Jahankhan, M Haris… - Advanced …, 2024 - Wiley Online Library
Achieving efficient and large‐area organic solar modules via non‐halogenated solution
processing is vital for the commercialization yet challenging. The primary hurdle is the …

Brominated Quaternary Ammonium Salt-Assisted Hybrid Electron Transport Layer for High-Performance Conventional Organic Solar Cells

W Sun, L Wang, Y Fu, C Guo, J Zhou… - … Applied Materials & …, 2024 - ACS Publications
Interlayer engineering is crucial for achieving efficient and stable organic solar cells (OSCs).
Herein, by introducing a commercialized brominated quaternary ammonium salt …