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TPD-Based Copolymers with Strong Interchain Aggregation and High Hole Mobility for Efficient Bulk Heterojunction Solar Cells
- Cheon, Ye Rim;
- Kim, Yu Jin;
- Ha, Jong-jin;
- Kim, Myeong-Jong;
- Park, Chan Eon;
- ... Kim, Yun-Hi
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47초록
ADA conjugated polymer, PTPD-TVT, containing thienopyrroledione and thiophenevinylenethiophene (TVT) units was synthesized as an electron donor for organic photovoltaic devices. It possesses a small bandgap and has excellent coplanarity and high hole mobility. To further enhance the interchain interactions between the polymer chains, a selenophenevinyleneselenophene (SVS) unit was also introduced and copolymerized to form the PTPD-SVS polymer. Devices made from PTPD-TVT and PTPD-SVS have rather promising power conversion efficiencies (PCEs) of 4.87 and 5.74%, respectively. The higher PCE value for solar cells based on PTPD-SVS was attributed to an enhanced carrier mobility resulting from stronger interchain aggregation in the BHJ active layer. These results show that the incorporation of a vinylene unit in TPD-based polymers is an effective way to reduce the bandgap and thereby improve charge transport for efficient photovoltaic devices.
키워드
- 제목
- TPD-Based Copolymers with Strong Interchain Aggregation and High Hole Mobility for Efficient Bulk Heterojunction Solar Cells
- 저자
- Cheon, Ye Rim; Kim, Yu Jin; Ha, Jong-jin; Kim, Myeong-Jong; Park, Chan Eon; Kim, Yun-Hi
- 발행일
- 2014-12
- 유형
- Article
- 저널명
- Macromolecules
- 권
- 47
- 호
- 24
- 페이지
- 8570 ~ 8577