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Significantly Improved Morphology and Efficiency of Nonhalogenated Solvent‐Processed Solar Cells Derived from a Conjugated Donor–Acceptor Block Copolymer

机译:从共轭施主-受体嵌段共聚物衍生的非卤代溶剂处理太阳能电池的形态和效率得到显着改善

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摘要

A highly crystalline conjugated donor (D)–acceptor (A) block copolymer (PBDT2T‐ ‐N2200) that has good solubility in nonhalogenated solvents is successfully synthesized. PBDT2T‐ ‐N2200 shows a broad complementary absorption behavior owing to a wide‐band gap donor (PBDT2T) present as a D‐block and a narrow‐band gap acceptor (N2200) present as an A‐block. Polymer solar cells (PSCs) with conjugated block copolymer (CBCP) are fabricated using a toluene solution and PSC created with an annealed film showing the highest power conversion efficiency of 6.43%, which is 2.4 times higher than that made with an annealed blend film of PBDT2T and N2200. Compared to the blend film, the PBDT2T‐ ‐N2200 film exhibits a highly improved surface and internal morphology, as well as a faster photoluminescence decay lifetime, indicating a more efficient photoinduced electron transfer. In addition, the PBDT2T‐ ‐N2200 film shows high crystallinity through an effective self‐assembly of each block during thermal annealing and a predominant face‐on chain orientation favorable to a vertical‐type PSC. Moreover, the CBCP‐based PSCs exhibit an excellent shelf‐life time of over 1020 h owing to their morphological stability. From these results, a D–A block copolymer system is one of the efficient strategies to improve miscibility and morphological stability in all polymer blend systems.
机译:成功合成了在非卤代溶剂中具有良好溶解性的高度结晶的共轭供体(D)-受体(A)嵌段共聚物(PBDT2T-N2200)。 PBDT2T‐N2200具有宽的互补吸收行为,这是因为宽带隙供体(PBDT2T)作为D嵌段存在,而窄带隙受体(N2200)作为A嵌段存在。使用甲苯溶液制造具有共轭嵌段共聚物(CBCP)的聚合物太阳能电池(PSC),并使用退火膜制成的PSC表现出最高的功率转换效率,为6.43%,这是使用退火混合物制成的PSC的2.4倍。 PBDT2T和N2200。与共混膜相比,PBDT2T‐N2200膜具有高度改善的表面和内部形态,以及更快的光致发光衰减寿命,表明光诱导的电子转移效率更高。此外,PBDT2T-N2200膜通过在热退火过程中有效地自组装每个嵌段,并具有有利于垂直型PSC的主要面对链取向,显示出高结晶度。此外,基于CBCP的PSC由于具有形态稳定性,因此具有超过1020 h的出色保质期。从这些结果来看,D–A嵌段共聚物体系是提高所有聚合物共混体系中混溶性和形态稳定性的有效策略之一。

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