A Pentacyclic Nitrogen-Bridged Thienyl-Phenylene-Thienyl Arene for Donor-Acceptor Copolymers: Synthesis, Characterization, and Applications in Field-Effect Transistors and Polymer Solar Cells

A pentacyclic benzodipyrrolothiophene (BDPT) unit, in which two outer thiophene rings are covalently fastened with the central phenylene ring by nitrogen bridges, was synthesized. The two pyrrole units embedded in BDPT were constructed by using one‐pot palladium‐catalyzed amination. The coplanar sta...

Full description

Saved in:
Bibliographic Details
Published inChemistry, an Asian journal Vol. 7; no. 9; pp. 2102 - 2110
Main Authors Tseng, Cheng-An, Wu, Jhong-Sian, Lin, Tai-Yen, Kao, Wei-Shun, Wu, Cheng-En, Hsu, So-Lin, Liao, Yun-Yu, Hsu, Chain-Shu, Huang, Huan-Yi, Hsieh, You-Zung, Cheng, Yen-Ju
Format Journal Article
LanguageEnglish
Published Weinheim WILEY-VCH Verlag 01.09.2012
WILEY‐VCH Verlag
Wiley Subscription Services, Inc
Subjects
Online AccessGet full text

Cover

Loading…
More Information
Summary:A pentacyclic benzodipyrrolothiophene (BDPT) unit, in which two outer thiophene rings are covalently fastened with the central phenylene ring by nitrogen bridges, was synthesized. The two pyrrole units embedded in BDPT were constructed by using one‐pot palladium‐catalyzed amination. The coplanar stannylated Sn‐BDPT building block was copolymerized with electron‐deficient thieno[3,4‐c]pyrrole‐4,6‐dione (TPD), benzothiadiazole (BT), and dithienyl‐diketopyrrolopyrrole (DPP) acceptors by Stille polymerization. The bridging nitrogen atoms make the BDPT motif highly electron‐abundant and structurally coplanar, which allows for tailoring the optical and electronic properties of the resultant polymers. Strong photoinduced charge‐transfer with significant band‐broadening in the solid state and relatively higher oxidation potential are characteristic of the BDPT‐based polymers. Poly(benzodipyrrolothiophene‐alt‐benzothiadiazole) (PBDPTBT) achieved the highest field‐effect hole mobility of up to 0.02 cm2 V−1 s−1. The photovoltaic device using the PBDPTBT/PC71BM blend (1:3, w/w) exhibited a Voc of 0.6 V, a Jsc of 10.34 mA cm−2, and a FF of 50 %, leading to a decent PCE of 3.08 %. Encouragingly, the device incorporating poly(benzodipyrrolothiophene‐alt‐thienopyrrolodione) (PBDPTTPD)/PC71BM (1:3, w/w) composite delivered a highest PCE of 3.72 %. The enhanced performance arises from the lower‐lying HOMO value of PBDPTTPD to yield a higher Voc of 0.72 V. Light up your chemistry! A pentacyclic benzodipyrrolothiophene (BDPT) unit, in which two outer thiophene rings are covalently fastened with the central phenylene ring by nitrogen bridges, was synthesized. Donor–acceptor polymers based on this building block show promise in the performance of solution‐processed organic transistors and photovoltaics (EH=2‐ethylhexyl).
Bibliography:Ministry of Education, Taiwan
ark:/67375/WNG-48D6R42C-W
ArticleID:ASIA201200186
National Science Council
istex:8AE542C7FBFE3105038CDA2553E855D776BEB181
ObjectType-Article-1
SourceType-Scholarly Journals-1
ObjectType-Feature-2
content type line 23
ISSN:1861-4728
1861-471X
DOI:10.1002/asia.201200186