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King Abdullah University of Science and Technology: KAUST Repository
Article . 2023
License: CC BY
Full-Text: http://xlink.rsc.org/?DOI=D3MH00787A
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A polymer library enables the rapid identification of a highly scalable and efficient donor material for organic solar cells

UKRI| DTP 2018-19 Imperial College London ,
UKRI| Application Targeted and Integrated Photovoltaics - Enhancing UK Capability in Solar ,
UKRI| Multielectron photoredox catalysts based on charge accumulation in conjugated macrocycles
Authors: Martina Rimmele; Zhuoran Qiao; Julianna Panidi; Francesco Furlan; Chulyeon Lee; Wen Liang Tan; Christopher R. McNeill; +3 Authors
Martina Rimmele; Zhuoran Qiao; Julianna Panidi; Francesco Furlan; Chulyeon Lee; Wen Liang Tan; Christopher R. McNeill; Youngkyoo Kim; Nicola Gasparini; Martin Heeney;
Abstract
A scalable, two-step synthesis facilitates the preparation of a polymer library of varying side chain and co-monomer, enabling rapid photovoltaic device screening. FO6-T emerged as the optimal donor achieving 15.4% PCE with L8BO as the acceptor.
Country
Saudi Arabia
Related Organizations
- King Abdullah University of Science and Technology Saudi Arabia
- Russian Academy of Sciences Russian Federation
- Monash University Australia
- Imperial College London United Kingdom
- Kyungpook National University Korea (Republic of)
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citations
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This is an alternative to the "Influence" indicator, which also reflects the overall/total impact of an article in the research community at large, based on the underlying citation network (diachronically).
popularity
Popularity provided by BIP!
This indicator reflects the "current" impact/attention (the "hype") of an article in the research community at large, based on the underlying citation network.
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Energy Research