Material design and device fabrication strategies for stretchable organic solar cells

JS Park, GU Kim, S Lee, JW Lee, S Li… - Advanced …, 2022 - Wiley Online Library
Recent advances in the power conversion efficiency (PCE) of organic solar cells (OSCs)
have greatly enhanced their commercial viability. Considering the technical standards (eg …

The dawn of single material organic solar cells

J Roncali, I Grosu - Advanced Science, 2019 - Wiley Online Library
Single material organic solar cells (SMOSCs) are based on ambivalent materials containing
electron donor (D) and acceptor (A) units capable to ensure the basic functions of light …

A conjugated donor-acceptor block copolymer enables over 11% efficiency for single-component polymer solar cells

Y Wu, J Guo, W Wang, Z Chen, Z Chen, R Sun, Q Wu… - Joule, 2021 - cell.com
Covalently linking donor (D) and acceptor (A) moieties into single material can be an
effective strategy to enable efficient exciton dissociation and charge generation. Herein, we …

Thermal-driven phase separation of double-cable polymers enables efficient single-component organic solar cells

G Feng, J Li, Y He, W Zheng, J Wang, C Li, Z Tang… - Joule, 2019 - cell.com
Conventional organic solar cells (OSCs) need two components that function as donor and
acceptor, respectively. Although there has been wishful thinking about constructing OSCs …

Single component organic solar cells based on oligothiophene‐fullerene conjugate

TL Nguyen, TH Lee, B Gautam, SY Park… - Advanced Functional …, 2017 - Wiley Online Library
A new donor (D)–acceptor (A) conjugate, benzodithiophene‐rhodanine–[6, 6]‐phenyl‐C61
butyric acid methyl ester (BDTRh–PCBM) comprising three covalently linked blocks, one of p …

An oligothiophene–fullerene molecule with a balanced donor–acceptor backbone for high‐performance single‐component organic solar cells

W Wang, R Sun, J Guo, J Guo… - Angewandte Chemie …, 2019 - Wiley Online Library
A new balanced donor–acceptor molecule, namely, benzodithiophene (BDT)‐rhodanine‐[6,
6]‐phenyl‐C71 butyric acid methyl ester (Rh‐PC71BM) comprising two covalently linked …

High-performance polymer solar cell with single active material of fully conjugated block copolymer composed of wide-band gap donor and narrow-band gap acceptor …

JH Lee, CG Park, A Kim, HJ Kim, Y Kim… - … applied materials & …, 2018 - ACS Publications
We synthesized a novel fully conjugated block copolymer, P3, in which a wide-band gap
donor block (P1) was connected to a narrow-band gap acceptor block (P2). As P3 contains …

Facile one-pot polymerization of a fully conjugated donor–acceptor block copolymer and its application in efficient single component polymer solar cells

CG Park, SH Park, Y Kim, TL Nguyen… - Journal of Materials …, 2019 - pubs.rsc.org
Conjugated block copolymers containing donor (D) and acceptor (A) blocks have high
potential for single component polymer solar cells (SC-PSCs), but still exhibit the complexity …

Triphenylamine-Based Push–Pull σ–C60 Dyad As Photoactive Molecular Material for Single-Component Organic Solar Cells: Synthesis, Characterizations, and …

A Labrunie, J Gorenflot, M Babics… - Chemistry of …, 2018 - ACS Publications
A push–pull σ–C60 molecular dyad was synthesized via Huisgen-type click chemistry and
used as photoactive material for single-component organic solar cells. Steady-state …

An Organic Dyad Composed of Diathiafulvalene‐Functionalized Diketopyrrolopyrrole–Fullerene for Single‐Component High‐Efficiency Organic Solar Cells

K Narayanaswamy, A Venkateswararao… - Angewandte Chemie …, 2016 - Wiley Online Library
A new low‐band gap dyad DPP‐Ful, which consists of covalently linked dithiafulvalene‐
functionalized diketopyrrolopyrrole as donor and fullerene (C60) as the acceptor, has been …