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Synthetic Nuances to Maximize n-Type Organic Electrochemical Transistor and Thermoelectric Performance in Fused Lactam Polymers
[Image: see text] A series of fully fused n-type mixed conduction lactam polymers p(g(7)NC(n)N), systematically increasing the alkyl side chain content, are synthesized via an inexpensive, nontoxic, precious-metal-free aldol polycondensation. Employing these polymers as channel materials in organic...
Autores principales: | , , , , , , , , , , , , , , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
American Chemical Society
2022
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Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9084553/ https://www.ncbi.nlm.nih.gov/pubmed/35257589 http://dx.doi.org/10.1021/jacs.2c00735 |
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author | Marks, Adam Chen, Xingxing Wu, Ruiheng Rashid, Reem B. Jin, Wenlong Paulsen, Bryan D. Moser, Maximilian Ji, Xudong Griggs, Sophie Meli, Dilara Wu, Xiaocui Bristow, Helen Strzalka, Joseph Gasparini, Nicola Costantini, Giovanni Fabiano, Simone Rivnay, Jonathan McCulloch, Iain |
author_facet | Marks, Adam Chen, Xingxing Wu, Ruiheng Rashid, Reem B. Jin, Wenlong Paulsen, Bryan D. Moser, Maximilian Ji, Xudong Griggs, Sophie Meli, Dilara Wu, Xiaocui Bristow, Helen Strzalka, Joseph Gasparini, Nicola Costantini, Giovanni Fabiano, Simone Rivnay, Jonathan McCulloch, Iain |
author_sort | Marks, Adam |
collection | PubMed |
description | [Image: see text] A series of fully fused n-type mixed conduction lactam polymers p(g(7)NC(n)N), systematically increasing the alkyl side chain content, are synthesized via an inexpensive, nontoxic, precious-metal-free aldol polycondensation. Employing these polymers as channel materials in organic electrochemical transistors (OECTs) affords state-of-the-art n-type performance with p(g(7)NC(10)N) recording an OECT electron mobility of 1.20 × 10(–2) cm(2) V(–1) s(–1) and a μC* figure of merit of 1.83 F cm(–1) V(–1) s(–1). In parallel to high OECT performance, upon solution doping with (4-(1,3-dimethyl-2,3-dihydro-1H-benzoimidazol-2-yl)phenyl)dimethylamine (N-DMBI), the highest thermoelectric performance is observed for p(g(7)NC(4)N), with a maximum electrical conductivity of 7.67 S cm(–1) and a power factor of 10.4 μW m(–1) K(–2). These results are among the highest reported for n-type polymers. Importantly, while this series of fused polylactam organic mixed ionic–electronic conductors (OMIECs) highlights that synthetic molecular design strategies to bolster OECT performance can be translated to also achieve high organic thermoelectric (OTE) performance, a nuanced synthetic approach must be used to optimize performance. Herein, we outline the performance metrics and provide new insights into the molecular design guidelines for the next generation of high-performance n-type materials for mixed conduction applications, presenting for the first time the results of a single polymer series within both OECT and OTE applications. |
format | Online Article Text |
id | pubmed-9084553 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2022 |
publisher | American Chemical Society |
record_format | MEDLINE/PubMed |
spelling | pubmed-90845532022-05-10 Synthetic Nuances to Maximize n-Type Organic Electrochemical Transistor and Thermoelectric Performance in Fused Lactam Polymers Marks, Adam Chen, Xingxing Wu, Ruiheng Rashid, Reem B. Jin, Wenlong Paulsen, Bryan D. Moser, Maximilian Ji, Xudong Griggs, Sophie Meli, Dilara Wu, Xiaocui Bristow, Helen Strzalka, Joseph Gasparini, Nicola Costantini, Giovanni Fabiano, Simone Rivnay, Jonathan McCulloch, Iain J Am Chem Soc [Image: see text] A series of fully fused n-type mixed conduction lactam polymers p(g(7)NC(n)N), systematically increasing the alkyl side chain content, are synthesized via an inexpensive, nontoxic, precious-metal-free aldol polycondensation. Employing these polymers as channel materials in organic electrochemical transistors (OECTs) affords state-of-the-art n-type performance with p(g(7)NC(10)N) recording an OECT electron mobility of 1.20 × 10(–2) cm(2) V(–1) s(–1) and a μC* figure of merit of 1.83 F cm(–1) V(–1) s(–1). In parallel to high OECT performance, upon solution doping with (4-(1,3-dimethyl-2,3-dihydro-1H-benzoimidazol-2-yl)phenyl)dimethylamine (N-DMBI), the highest thermoelectric performance is observed for p(g(7)NC(4)N), with a maximum electrical conductivity of 7.67 S cm(–1) and a power factor of 10.4 μW m(–1) K(–2). These results are among the highest reported for n-type polymers. Importantly, while this series of fused polylactam organic mixed ionic–electronic conductors (OMIECs) highlights that synthetic molecular design strategies to bolster OECT performance can be translated to also achieve high organic thermoelectric (OTE) performance, a nuanced synthetic approach must be used to optimize performance. Herein, we outline the performance metrics and provide new insights into the molecular design guidelines for the next generation of high-performance n-type materials for mixed conduction applications, presenting for the first time the results of a single polymer series within both OECT and OTE applications. American Chemical Society 2022-03-08 2022-03-16 /pmc/articles/PMC9084553/ /pubmed/35257589 http://dx.doi.org/10.1021/jacs.2c00735 Text en © 2022 American Chemical Society https://creativecommons.org/licenses/by/4.0/Permits the broadest form of re-use including for commercial purposes, provided that author attribution and integrity are maintained (https://creativecommons.org/licenses/by/4.0/). |
spellingShingle | Marks, Adam Chen, Xingxing Wu, Ruiheng Rashid, Reem B. Jin, Wenlong Paulsen, Bryan D. Moser, Maximilian Ji, Xudong Griggs, Sophie Meli, Dilara Wu, Xiaocui Bristow, Helen Strzalka, Joseph Gasparini, Nicola Costantini, Giovanni Fabiano, Simone Rivnay, Jonathan McCulloch, Iain Synthetic Nuances to Maximize n-Type Organic Electrochemical Transistor and Thermoelectric Performance in Fused Lactam Polymers |
title | Synthetic
Nuances to Maximize n-Type Organic
Electrochemical Transistor and Thermoelectric Performance in Fused
Lactam Polymers |
title_full | Synthetic
Nuances to Maximize n-Type Organic
Electrochemical Transistor and Thermoelectric Performance in Fused
Lactam Polymers |
title_fullStr | Synthetic
Nuances to Maximize n-Type Organic
Electrochemical Transistor and Thermoelectric Performance in Fused
Lactam Polymers |
title_full_unstemmed | Synthetic
Nuances to Maximize n-Type Organic
Electrochemical Transistor and Thermoelectric Performance in Fused
Lactam Polymers |
title_short | Synthetic
Nuances to Maximize n-Type Organic
Electrochemical Transistor and Thermoelectric Performance in Fused
Lactam Polymers |
title_sort | synthetic
nuances to maximize n-type organic
electrochemical transistor and thermoelectric performance in fused
lactam polymers |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9084553/ https://www.ncbi.nlm.nih.gov/pubmed/35257589 http://dx.doi.org/10.1021/jacs.2c00735 |
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