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Progress of Conjugated Polymers as Emerging Thermoelectric Materials

  • Thanks to the combined effort s of scientist s in several research fields, the preceding decade has witnessed considerable progress in the use of conjugated polymers as emerging thermoelectric materials leading to significant improvements in performance and demonstration of a number of diverse applications. Despite these recent advances, systematic assessments of the impact of molecular design on thermoelectric properties are scarce. Although several reviews marginally highlight the role of chemical structure, the understanding of structure-performance relationships is still fragmented. An in-depth understanding of the relationship between molecular structure and thermoelectric properties will enable the rational design of next-generation thermoelectric polymers. To this end, this review showcases the state-of-the-art thermoelectric polymers, discusses structure-performance relationships, suggests strategies for improving thermoelectric performance that go beyond molecular design, and highlights some of the most impressiveThanks to the combined effort s of scientist s in several research fields, the preceding decade has witnessed considerable progress in the use of conjugated polymers as emerging thermoelectric materials leading to significant improvements in performance and demonstration of a number of diverse applications. Despite these recent advances, systematic assessments of the impact of molecular design on thermoelectric properties are scarce. Although several reviews marginally highlight the role of chemical structure, the understanding of structure-performance relationships is still fragmented. An in-depth understanding of the relationship between molecular structure and thermoelectric properties will enable the rational design of next-generation thermoelectric polymers. To this end, this review showcases the state-of-the-art thermoelectric polymers, discusses structure-performance relationships, suggests strategies for improving thermoelectric performance that go beyond molecular design, and highlights some of the most impressive applications of thermoelectric polymers.zeige mehrzeige weniger

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Metadaten
Verfasserangaben:Suhao WangORCiDGND, Guangzheng ZuoORCiDGND, Jongho KimORCiD, Henning Sirringhaus
DOI:https://doi.org/10.1016/j.progpolymsci.2022.101548
ISSN:0079-6700
ISSN:1873-1619
Titel des übergeordneten Werks (Englisch):Progress in polymer science
Verlag:Elsevier
Verlagsort:Oxford
Publikationstyp:Wissenschaftlicher Artikel
Sprache:Englisch
Datum der Erstveröffentlichung:01.06.2022
Erscheinungsjahr:2022
Datum der Freischaltung:21.02.2024
Freies Schlagwort / Tag:Conducting polymers; Doping; Organic thermoelectrics; Polaron; Seebeck coefficient; Structure-performance relationship
Band:129
Aufsatznummer:101548
Seitenanzahl:34
Fördernde Institution:CY Initiative of Excellence (Talent project: Thermoelectric Green; Energy); EUTOPIA Young Leaders Academy; Alexander von Humboldt; Foundation; Royal Society through a Royal Society Research Professorship
Organisationseinheiten:Mathematisch-Naturwissenschaftliche Fakultät / Institut für Physik und Astronomie
DDC-Klassifikation:5 Naturwissenschaften und Mathematik / 52 Astronomie / 520 Astronomie und zugeordnete Wissenschaften
5 Naturwissenschaften und Mathematik / 53 Physik / 530 Physik
Peer Review:Referiert
Publikationsweg:Open Access / Hybrid Open-Access
Lizenz (Deutsch):License LogoCC-BY-NC-ND - Namensnennung, nicht kommerziell, keine Bearbeitungen 4.0 International
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