Interlayers for non-fullerene based polymer solar cells: distinctive features and challenges

R Sorrentino, E Kozma, S Luzzati, R Po - Energy & Environmental …, 2021 - pubs.rsc.org
Polymer solar cells based on fullerene acceptors have reached in recent years power
conversion efficiencies (PCEs) approaching 13%. The advent of non-fullerene acceptors …

Recent advancements in perylene diimide as an electron acceptor in organic solar cells

JP Tiwari - Journal of Materials Chemistry C, 2024 - pubs.rsc.org
Interest in alternative powering solutions of the growing Internet of Things (IOTs) has
boosted the research activity in third-generation solar cell devices. Organic, perovskite and …

Integrated linker-regulation and ring-fusion engineering for efficient additive-free non-fullerene organic solar cells

Y Yin, W Zhang, Z Zheng, Z Ge, Y Liu, F Guo… - Journal of Materials …, 2020 - pubs.rsc.org
The rational molecular design and structural modification of quasi-two-dimensional fused
perylene diimide (quasi-2D FPDI) acceptors have received growing attention for application …

Structural symmetry-breaking of a perylene diimide acceptor at the N-position for enhanced photovoltaic performance

Y Liao, L Wang, H Shen, X You, D Wu… - New Journal of Chemistry, 2022 - pubs.rsc.org
The vinylene-bridged helical perylene diimide dimer (PDI2) and its derivatives have
received considerable attention for application in nonfullerene organic solar cells (OSCs) …

The impact of linker on the photovoltaic performance of helical perylene diimide based non-fullerene acceptors

X Luo, C Hu, X You, G Shao, D Wu, J Xia - Dyes and Pigments, 2023 - Elsevier
Linking two or more perylene diimide (PDI) directly together and/or with congested spacers
at the N-position, α-or bay-region is a robust strategy for constructing high-performance non …

Unfused vs fused thienoazacoronene-cored perylene diimide oligomer based acceptors for non-fullerene organic solar cells

X You, P Xia, Y Li, D Wu, J Xia - Dyes and Pigments, 2021 - Elsevier
Ring-fusion is a feasible design strategy to improve the photovoltaic performance of
perylene diimide (PDI) based non-fullerene acceptors (NFAs) in which multiple PDI units are …

Novel A-π-AD type perylene diimide acceptor for high-performance fullerene-free organic solar cells

XX Ge, D Chen, Y Yin, Z Zheng, F Guo, S Gao, Y Zhang - Synthetic Metals, 2022 - Elsevier
Two novel PDI-based acceptors PDI-SPAc and FPDI-SPAc, which contain perylene diimide
(PDI) and a quasi-two-dimensional (quasi-2D) fused PDI (FPDI), respectively, with electron …

Tetraphenylethylene vs triphenylethylene core-based perylene diimide acceptor for non-fullerene organic solar cells

K Xu, J Hu, K Lu, M Wu, H Lu, J Yi, D Wu, J Xia - Dyes and Pigments, 2021 - Elsevier
The ethylene fused PDI oligomers, especially for the dimer (PDI2), have emerged as
alternative building blocks to the parent PDI in constructing NFAs owing to their outstanding …

Perylene Diimide‐based Non‐fullerene Acceptors With A‐D‐A′‐D‐A Architecture For Organic Solar Cells

X You, H Shen, Q Wu, Y Li, D Wu… - Chemistry–An Asian …, 2023 - Wiley Online Library
The vinylene‐bridged helical PDI dimer (PDI2) has been an alternative PDI building block
for non‐fullerene acceptor (NFAs). However, the development of PDI2 derivatives still lag …

An Asymmetric Perylene Diimide Dimer Acceptor for High Performance Organic Solar Cells

X You, H Shen, Y Li, D Wu, J Xia - ChemPlusChem, 2023 - Wiley Online Library
The vinylene‐bridged helical perylene diimide (PDI) dimer (PDI2) with a build‐in twisted
configuration is an alternative building block to the parent PDI for the construction of efficient …