A thermally activated and highly miscible dopant for n-type organic thermoelectrics

Realizing efficient n-doping in organic thermoelectrics remains a challenge due to dopant-semiconductor immiscibility, poor dopant stability and low doping efficiency. Here, the authors use computer-assisted screening to develop n-dopants for thermoelectric polymers that show record power factors.

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Autores principales: Chi-Yuan Yang, Yi-Fan Ding, Dazhen Huang, Jue Wang, Ze-Fan Yao, Chun-Xi Huang, Yang Lu, Hio-Ieng Un, Fang-Dong Zhuang, Jin-Hu Dou, Chong-an Di, Daoben Zhu, Jie-Yu Wang, Ting Lei, Jian Pei
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Lenguaje:EN
Publicado: Nature Portfolio 2020
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Acceso en línea:https://doaj.org/article/97e302950047467d9daebe7379999046
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spelling oai:doaj.org-article:97e302950047467d9daebe73799990462021-12-02T16:10:47ZA thermally activated and highly miscible dopant for n-type organic thermoelectrics10.1038/s41467-020-17063-12041-1723https://doaj.org/article/97e302950047467d9daebe73799990462020-07-01T00:00:00Zhttps://doi.org/10.1038/s41467-020-17063-1https://doaj.org/toc/2041-1723Realizing efficient n-doping in organic thermoelectrics remains a challenge due to dopant-semiconductor immiscibility, poor dopant stability and low doping efficiency. Here, the authors use computer-assisted screening to develop n-dopants for thermoelectric polymers that show record power factors.Chi-Yuan YangYi-Fan DingDazhen HuangJue WangZe-Fan YaoChun-Xi HuangYang LuHio-Ieng UnFang-Dong ZhuangJin-Hu DouChong-an DiDaoben ZhuJie-Yu WangTing LeiJian PeiNature PortfolioarticleScienceQENNature Communications, Vol 11, Iss 1, Pp 1-10 (2020)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Chi-Yuan Yang
Yi-Fan Ding
Dazhen Huang
Jue Wang
Ze-Fan Yao
Chun-Xi Huang
Yang Lu
Hio-Ieng Un
Fang-Dong Zhuang
Jin-Hu Dou
Chong-an Di
Daoben Zhu
Jie-Yu Wang
Ting Lei
Jian Pei
A thermally activated and highly miscible dopant for n-type organic thermoelectrics
description Realizing efficient n-doping in organic thermoelectrics remains a challenge due to dopant-semiconductor immiscibility, poor dopant stability and low doping efficiency. Here, the authors use computer-assisted screening to develop n-dopants for thermoelectric polymers that show record power factors.
format article
author Chi-Yuan Yang
Yi-Fan Ding
Dazhen Huang
Jue Wang
Ze-Fan Yao
Chun-Xi Huang
Yang Lu
Hio-Ieng Un
Fang-Dong Zhuang
Jin-Hu Dou
Chong-an Di
Daoben Zhu
Jie-Yu Wang
Ting Lei
Jian Pei
author_facet Chi-Yuan Yang
Yi-Fan Ding
Dazhen Huang
Jue Wang
Ze-Fan Yao
Chun-Xi Huang
Yang Lu
Hio-Ieng Un
Fang-Dong Zhuang
Jin-Hu Dou
Chong-an Di
Daoben Zhu
Jie-Yu Wang
Ting Lei
Jian Pei
author_sort Chi-Yuan Yang
title A thermally activated and highly miscible dopant for n-type organic thermoelectrics
title_short A thermally activated and highly miscible dopant for n-type organic thermoelectrics
title_full A thermally activated and highly miscible dopant for n-type organic thermoelectrics
title_fullStr A thermally activated and highly miscible dopant for n-type organic thermoelectrics
title_full_unstemmed A thermally activated and highly miscible dopant for n-type organic thermoelectrics
title_sort thermally activated and highly miscible dopant for n-type organic thermoelectrics
publisher Nature Portfolio
publishDate 2020
url https://doaj.org/article/97e302950047467d9daebe7379999046
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