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通过连续流中的直接芳基聚合制备共轭聚合物:降低成本和批间变化,实现高通量能量转换。

Conjugated Polymers Via Direct Arylation Polymerization in Continuous Flow: Minimizing the Cost and Batch-to-Batch Variations for High-Throughput Energy Conversion.

机构信息

Department of Chemistry and Loker Hydrocarbon Research Institute, University of Southern California, Los Angeles, CA, 90089-1661, USA.

DTU Energy, Technical University of Denmark, Roskilde, DK-4000, Denmark.

出版信息

Macromol Rapid Commun. 2017 Nov;38(22). doi: 10.1002/marc.201700526. Epub 2017 Oct 13.

Abstract

Continuous flow methods are utilized in conjunction with direct arylation polymerization (DArP) for the scaled synthesis of the roll-to-roll compatible polymer, poly[(2,5-bis(2-hexyldecyloxy)phenylene)-alt-(4,7-di(thiophen-2-yl)-benzo[c][1,2,5]thiadiazole)] (PPDTBT). PPDTBT is based on simple, inexpensive, and scalable monomers using thienyl-flanked benzothiadiazole as the acceptor, which is the first β-unprotected substrate to be used in continuous flow via DArP, enabling critical evaluation of the suitability of this emerging synthetic method for minimizing defects and for the scaled synthesis of high-performance materials. To demonstrate the usefulness of the method, DArP-prepared PPDTBT via continuous flow synthesis is employed for the preparation of indium tin oxide (ITO)-free and flexible roll-coated solar cells to achieve a power conversion efficiency of 3.5% for 1 cm devices, which is comparable to the performance of PPDTBT polymerized through Stille cross coupling. These efforts demonstrate the distinct advantages of the continuous flow protocol with DArP avoiding use of toxic tin chemicals, reducing the associated costs of polymer upscaling, and minimizing batch-to-batch variations for high-quality material.

摘要

连续流动方法与直接芳基聚合(DArP)结合使用,用于规模化合成可用于卷对卷的聚合物,聚[(2,5-双(2-己基癸氧基)苯并[1,2-b:4,5-b']二噻吩)-交替-(4,7-二噻吩-2-基苯并[c][1,2,5]噻二唑](PPDTBT)。PPDTBT 基于简单、廉价且可规模化的单体,使用噻吩侧翼的苯并噻二唑作为受体,这是第一个在连续流中通过 DArP 使用的无β保护基的底物,从而可以对这种新兴合成方法的适用性进行关键性评估,以最小化缺陷并进行高性能材料的规模化合成。为了展示该方法的有用性,通过连续流动合成制备的 DArP-PPDTBT 用于制备无铟锡氧化物(ITO)和柔性卷涂层太阳能电池,以实现 1 cm 器件 3.5%的功率转换效率,与通过 Stille 交叉偶联聚合的 PPDTBT 性能相当。这些努力展示了 DArP 连续流动方案的明显优势,避免了使用有毒的锡化学品,降低了聚合物规模化的相关成本,并最大限度地减少了高质量材料的批间变化。

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