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用于有机太阳能电池的共轭聚合物PDCBT的简便直接C-H芳基化聚合反应

Facile Direct C-H Arylation Polymerization of Conjugated Polymer, PDCBT, for Organic Solar Cells.

作者信息

Jang Soo-Young, Kim In-Bok, Kim Yunseul, Lim Dae-Hee, Kang Hongkyu, Heeney Martin, Kim Dong-Yu

机构信息

Research Institute for Solar and Sustainable Energies, Gwangju Institute of Science and Technology, Gwangju, 61005, Republic of Korea.

School of Materials Science and Engineering, Gwangju Institute of Science and Technology, Gwangju, 61005, Republic of Korea.

出版信息

Macromol Rapid Commun. 2022 Oct;43(20):e2200405. doi: 10.1002/marc.202200405. Epub 2022 Aug 18.

Abstract

Direct arylation polymerization (DArP) is a synthetic method for conjugated polymers; in DArP, organometallic functionalization steps are omitted and there are no toxic byproducts. As a result, it is considered a more sustainable alternative compared to conventional methods such as Stille polymerization. To explore the possibility of DArP-based polymers as donor materials in organic solar cells (OSCs), a series of conjugated polymers based on the structure of PDCBT (poly[2,2''''-bis[[(2-butyloctyl)oxy]carbonyl][2,2':5',2'':5'',2'''-quaterthiophene]-5,5'''-diyl]) are synthesized using DArP and Stille polymerization. By controlling the monomer concentration and reaction time in DArP, DArP-5 with the highest M (21.9 kDa) can be obtained and its optoelectronic properties, electrochemical properties, and microscopic molecular ordering are comparable to those of Stille-based PDCBT (Stille-P). Analysis of the polymer structure indicates no structural defects such as crosslinking from undesired β-coupling reactions in DArP-5. Upon blending with the PC BM acceptor molecule, an increase in the crystallite size of DArP-5 is also observed. In OSC devices with a polymer:PC BM bulk-heterojunction photoactive layer, DArP-5 demonstrates a comparable power conversion efficiency of 5.8% with that of Stille-P (5.5%). These results prove that DArP is suitable for synthesizing PDCBT, and DArP-based PDCBT can be used in OSCs as an alternative of Stille-based one.

摘要

直接芳基化聚合(DArP)是一种用于合成共轭聚合物的方法;在DArP中,省略了有机金属官能化步骤,且没有有毒副产物。因此,与传统方法如Stille聚合相比,它被认为是一种更具可持续性的替代方法。为了探索基于DArP的聚合物作为有机太阳能电池(OSC)供体材料的可能性,使用DArP和Stille聚合合成了一系列基于PDCBT(聚[2,2''''-双[[(2-丁基辛基)氧基]羰基][2,2':5',2'':5'',2'''-四噻吩]-5,5'''-二基])结构的共轭聚合物。通过控制DArP中的单体浓度和反应时间,可以获得分子量最高(21.9 kDa)的DArP-5,其光电性能、电化学性能和微观分子有序性与基于Stille的PDCBT(Stille-P)相当。聚合物结构分析表明,DArP-5中不存在诸如由不期望的β-偶联反应引起的交联等结构缺陷。与PC BM受体分子共混时,还观察到DArP-5的微晶尺寸增加。在具有聚合物:PC BM体异质结光活性层的OSC器件中,DArP-5表现出与Stille-P(5.5%)相当的5.8%的功率转换效率。这些结果证明DArP适用于合成PDCBT,且基于DArP的PDCBT可作为基于Stille的PDCBT的替代品用于OSC中。

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