Cargando…

Controlling n-Type Molecular Doping via Regiochemistry and Polarity of Pendant Groups on Low Band Gap Donor–Acceptor Copolymers

[Image: see text] We demonstrate the impact of the type and position of pendant groups on the n-doping of low-band gap donor–acceptor (D–A) copolymers. Polar glycol ether groups simultaneously increase the electron affinities of D–A copolymers and improve the host/dopant miscibility compared to nonp...

Descripción completa

Detalles Bibliográficos
Autores principales: Ye, Gang, Liu, Jian, Qiu, Xinkai, Stäter, Sebastian, Qiu, Li, Liu, Yuru, Yang, Xuwen, Hildner, Richard, Koster, L. Jan Anton, Chiechi, Ryan C.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2021
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8154869/
https://www.ncbi.nlm.nih.gov/pubmed/34054145
http://dx.doi.org/10.1021/acs.macromol.1c00317
_version_ 1783699088416440320
author Ye, Gang
Liu, Jian
Qiu, Xinkai
Stäter, Sebastian
Qiu, Li
Liu, Yuru
Yang, Xuwen
Hildner, Richard
Koster, L. Jan Anton
Chiechi, Ryan C.
author_facet Ye, Gang
Liu, Jian
Qiu, Xinkai
Stäter, Sebastian
Qiu, Li
Liu, Yuru
Yang, Xuwen
Hildner, Richard
Koster, L. Jan Anton
Chiechi, Ryan C.
author_sort Ye, Gang
collection PubMed
description [Image: see text] We demonstrate the impact of the type and position of pendant groups on the n-doping of low-band gap donor–acceptor (D–A) copolymers. Polar glycol ether groups simultaneously increase the electron affinities of D–A copolymers and improve the host/dopant miscibility compared to nonpolar alkyl groups, improving the doping efficiency by a factor of over 40. The bulk mobility of the doped films increases with the fraction of polar groups, leading to a best conductivity of 0.08 S cm(–1) and power factor (PF) of 0.24 μW m(–1) K(–2) in the doped copolymer with the polar pendant groups on both the D and A moieties. We used spatially resolved absorption spectroscopy to relate commensurate morphological changes to the dispersion of dopants and to the relative local doping efficiency, demonstrating a direct relationship between the morphology of the polymer phase, the solvation of the molecular dopant, and the electrical properties of doped films. Our work offers fundamental new insights into the influence of the physical properties of pendant chains on the molecular doping process, which should be generalizable to any molecularly doped polymer films.
format Online
Article
Text
id pubmed-8154869
institution National Center for Biotechnology Information
language English
publishDate 2021
publisher American Chemical Society
record_format MEDLINE/PubMed
spelling pubmed-81548692021-05-27 Controlling n-Type Molecular Doping via Regiochemistry and Polarity of Pendant Groups on Low Band Gap Donor–Acceptor Copolymers Ye, Gang Liu, Jian Qiu, Xinkai Stäter, Sebastian Qiu, Li Liu, Yuru Yang, Xuwen Hildner, Richard Koster, L. Jan Anton Chiechi, Ryan C. Macromolecules [Image: see text] We demonstrate the impact of the type and position of pendant groups on the n-doping of low-band gap donor–acceptor (D–A) copolymers. Polar glycol ether groups simultaneously increase the electron affinities of D–A copolymers and improve the host/dopant miscibility compared to nonpolar alkyl groups, improving the doping efficiency by a factor of over 40. The bulk mobility of the doped films increases with the fraction of polar groups, leading to a best conductivity of 0.08 S cm(–1) and power factor (PF) of 0.24 μW m(–1) K(–2) in the doped copolymer with the polar pendant groups on both the D and A moieties. We used spatially resolved absorption spectroscopy to relate commensurate morphological changes to the dispersion of dopants and to the relative local doping efficiency, demonstrating a direct relationship between the morphology of the polymer phase, the solvation of the molecular dopant, and the electrical properties of doped films. Our work offers fundamental new insights into the influence of the physical properties of pendant chains on the molecular doping process, which should be generalizable to any molecularly doped polymer films. American Chemical Society 2021-04-08 2021-04-27 /pmc/articles/PMC8154869/ /pubmed/34054145 http://dx.doi.org/10.1021/acs.macromol.1c00317 Text en © 2021 The Authors. Published by American Chemical Society Permits non-commercial access and re-use, provided that author attribution and integrity are maintained; but does not permit creation of adaptations or other derivative works (https://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Ye, Gang
Liu, Jian
Qiu, Xinkai
Stäter, Sebastian
Qiu, Li
Liu, Yuru
Yang, Xuwen
Hildner, Richard
Koster, L. Jan Anton
Chiechi, Ryan C.
Controlling n-Type Molecular Doping via Regiochemistry and Polarity of Pendant Groups on Low Band Gap Donor–Acceptor Copolymers
title Controlling n-Type Molecular Doping via Regiochemistry and Polarity of Pendant Groups on Low Band Gap Donor–Acceptor Copolymers
title_full Controlling n-Type Molecular Doping via Regiochemistry and Polarity of Pendant Groups on Low Band Gap Donor–Acceptor Copolymers
title_fullStr Controlling n-Type Molecular Doping via Regiochemistry and Polarity of Pendant Groups on Low Band Gap Donor–Acceptor Copolymers
title_full_unstemmed Controlling n-Type Molecular Doping via Regiochemistry and Polarity of Pendant Groups on Low Band Gap Donor–Acceptor Copolymers
title_short Controlling n-Type Molecular Doping via Regiochemistry and Polarity of Pendant Groups on Low Band Gap Donor–Acceptor Copolymers
title_sort controlling n-type molecular doping via regiochemistry and polarity of pendant groups on low band gap donor–acceptor copolymers
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8154869/
https://www.ncbi.nlm.nih.gov/pubmed/34054145
http://dx.doi.org/10.1021/acs.macromol.1c00317
work_keys_str_mv AT yegang controllingntypemoleculardopingviaregiochemistryandpolarityofpendantgroupsonlowbandgapdonoracceptorcopolymers
AT liujian controllingntypemoleculardopingviaregiochemistryandpolarityofpendantgroupsonlowbandgapdonoracceptorcopolymers
AT qiuxinkai controllingntypemoleculardopingviaregiochemistryandpolarityofpendantgroupsonlowbandgapdonoracceptorcopolymers
AT statersebastian controllingntypemoleculardopingviaregiochemistryandpolarityofpendantgroupsonlowbandgapdonoracceptorcopolymers
AT qiuli controllingntypemoleculardopingviaregiochemistryandpolarityofpendantgroupsonlowbandgapdonoracceptorcopolymers
AT liuyuru controllingntypemoleculardopingviaregiochemistryandpolarityofpendantgroupsonlowbandgapdonoracceptorcopolymers
AT yangxuwen controllingntypemoleculardopingviaregiochemistryandpolarityofpendantgroupsonlowbandgapdonoracceptorcopolymers
AT hildnerrichard controllingntypemoleculardopingviaregiochemistryandpolarityofpendantgroupsonlowbandgapdonoracceptorcopolymers
AT kosterljananton controllingntypemoleculardopingviaregiochemistryandpolarityofpendantgroupsonlowbandgapdonoracceptorcopolymers
AT chiechiryanc controllingntypemoleculardopingviaregiochemistryandpolarityofpendantgroupsonlowbandgapdonoracceptorcopolymers