Please use this identifier to cite or link to this item: http://hdl.handle.net/1942/29029
Title: All-polymer solar cells based on photostable bis(perylene diimide) acceptor polymers
Authors: LENAERTS, Ruben 
CARDEYNAELS, Tom 
Sudakov, Ivan
KESTERS, Jurgen 
VERSTAPPEN, Pieter 
MANCA, Jean 
Champagne, Benoit
LUTSEN, Laurence 
VANDERZANDE, Dirk 
VANDEWAL, Koen 
Goovaerts, Etienne
MAES, Wouter 
Issue Date: 2019
Publisher: ELSEVIER SCIENCE BV
Source: SOLAR ENERGY MATERIALS AND SOLAR CELLS, 196, p. 178-184
Abstract: Fullerene-free organic photovoltaics have recently reached impressive power conversion efficiencies above 14% for single junctions, increasing their competitiveness with respect to alternative thin-film technologies. In most record devices, electron-donating conjugated polymers are combined with novel generation small molecule acceptors. All-polymer organic solar cells, on the other hand, still lag behind in efficiency, although they have specific advantages in terms of ink formulation and long-term operational stability. Another point of attention is the synthetic complexity of the active layer materials, notably on the side of the new acceptor molecules. Therefore, the present study focuses on the implementation of the stable and cost-effective perylene diimide structure as the key component of high-performance electron-accepting polymers. The synthesis, structural and optoelectronic characterization of four push-pull type copolymers containing the electron-deficient bis(perylene diimide) (bis-PDI) unit is reported, as well as the photovoltaic analysis of these acceptor materials in combination with a well-known donor polymer (PTB7-Th). The acceptor polymers differ in the electron-rich part of the alternating push-pull structure and their solar cell power conversion efficiencies range from 3.2 to 4.7%. The maximum efficiency - the best performance achieved with a bis-PDI polymer so far - is obtained for the structurally most simple polymer, containing merely thiophene as the electron-rich building block. Controlled degradation under blue light in air is monitored by the bleaching of the relevant UV-Vis absorption bands, demonstrating high stability for the bis-PDI-thiophene containing polymers as compared to some prototype small molecule acceptors (FBR and ITIC).
Notes: [Lenaerts, Ruben; Cardeynaels, Tom; Kesters, Jurgen; Verstappen, Pieter; Vanderzande, Dirk; Vandewal, Koen; Maes, Wouter] UHasselt Hasselt Univ, Inst Mat Res IMO IMOMEC, Agoralaan 1, B-3590 Diepenbeek, Belgium. [Lenaerts, Ruben; Cardeynaels, Tom; Kesters, Jurgen; Verstappen, Pieter; Lutsen, Laurence; Vanderzande, Dirk; Vandewal, Koen; Maes, Wouter] IMEC, IMOMEC Div, Wetenschapspk 1, B-3590 Diepenbeek, Belgium. [Cardeynaels, Tom; Champagne, Benoit] Univ Namur, Lab Theoret Chem, Theoret & Struct Phys Chem Unit, Namur Inst Struct Matter, Rue Bruxelles 61, B-5000 Namur, Belgium. [Sudakov, Ivan; Goovaerts, Etienne] Univ Antwerp, Dept Phys, Univ Pl 1, B-2610 Antwerp, Belgium. [Manca, Jean] UHasselt Hasselt Univ, X LAB, Agoralaan 1, B-3590 Diepenbeek, Belgium.
Keywords: Organic photovoltaics; Fullerene-free; All-polymer; Perylene diimide; Synthetic complexity; Photostability;Organic photovoltaics; Fullerene-free; All-polymer; Perylene diimide; Synthetic complexity; Photostability
Document URI: http://hdl.handle.net/1942/29029
ISSN: 0927-0248
e-ISSN: 1879-3398
DOI: 10.1016/j.solmat.2019.03.044
ISI #: 000467890800021
Rights: 2019 Elsevier B.V. All rights reserved
Category: A1
Type: Journal Contribution
Validations: ecoom 2020
Appears in Collections:Research publications

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