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具有全共轭嵌段共聚物单活性材料的高性能聚合物太阳能电池,该嵌段共聚物由宽能带隙给体和窄能带隙受体嵌段组成。

High-Performance Polymer Solar Cell with Single Active Material of Fully Conjugated Block Copolymer Composed of Wide-Band gap Donor and Narrow-Band gap Acceptor Blocks.

机构信息

Department of Chemistry, Research Institute for Natural Sciences , Korea University , 145 Anam-Ro , Sungbuk-gu, Seoul 136-701 , Korea.

出版信息

ACS Appl Mater Interfaces. 2018 Jun 6;10(22):18974-18983. doi: 10.1021/acsami.8b03580. Epub 2018 May 23.

Abstract

We synthesized a novel fully conjugated block copolymer, P3, in which a wide-band gap donor block (P1) was connected to a narrow-band gap acceptor block (P2). As P3 contains P1 block with a wide bandgap and P2 block with a narrow bandgap, it exhibits a very wide complementary absorption. Transient photoluminescence measurement using P3 dilute solution demonstrated intramolecular charge transfer between the P1 block and the P2 block, which was not observed in a P1/P2 blend solution. A P3 thin film showed complete PL quenching because the photoinduced inter-/intramolecular charge transfer states were effectively formed. This phenomenon can play an important role in the photovoltaic properties of P3-based polymer solar cells. A single active material polymer solar cell (SAMPSC) fabricated from P3 alone exhibited a high power conversion efficiency (PCE) of 3.87% with a high open-circuit voltage of 0.93 V and a short-circuit current of 8.26 mA/cm, demonstrating a much better performance than a binary P1-/P2-based polymer solar cell (PCE = 1.14%). This result facilitates the possible improvement of the photovoltaic performance of SAMPSCs by inducing favorable nanophase segregation between p- and n blocks. In addition, owing to the high morphological stability of the block copolymer, excellent shelf-life was observed in a P3-based SAMPSC compared with a P1/P2-based PSC.

摘要

我们合成了一种新型全共轭嵌段共聚物 P3,其中一个宽带隙给体嵌段(P1)与一个窄带隙受体嵌段(P2)相连。由于 P3 包含具有宽能带隙的 P1 嵌段和具有窄能带隙的 P2 嵌段,因此它表现出非常宽的互补吸收。使用 P3 稀溶液进行的瞬态光致发光测量表明,P1 嵌段和 P2 嵌段之间存在分子内电荷转移,而在 P1/P2 共混溶液中则没有观察到这种现象。P3 薄膜表现出完全的 PL 猝灭,因为光致的分子间/分子内电荷转移态被有效地形成。这种现象在基于 P3 的聚合物太阳能电池的光伏性能中可能起着重要作用。由 P3 单独制成的单活性材料聚合物太阳能电池(SAMPSC)表现出 3.87%的高功率转换效率(PCE),开路电压为 0.93V,短路电流为 8.26mA/cm,性能明显优于二元 P1-/P2-基于聚合物太阳能电池(PCE=1.14%)。这一结果通过在 p 型和 n 型嵌段之间诱导有利的纳米相分离,促进了 SAMPSCs 光伏性能的可能改善。此外,由于嵌段共聚物的高形态稳定性,与基于 P1/P2 的 PSC 相比,基于 P3 的 SAMPSC 表现出优异的保质期。

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