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首页> 外文期刊>ACS Macro Letters >Random Poly(3-hexylthiophene-co-3-cyanothiophene) Copolymers via Direct Arylation Polymerization (DArP) for Organic Solar Cells with High Open-Circuit Voltage
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Random Poly(3-hexylthiophene-co-3-cyanothiophene) Copolymers via Direct Arylation Polymerization (DArP) for Organic Solar Cells with High Open-Circuit Voltage

机译:通过直接丙烯酸化(DArP)的高开路电压有机太阳能电池无规聚(3-己基噻吩-co-3-氰基噻吩)共聚物

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摘要

A family of four poly(3-hexylthiophene) (P3HT) based copolymers containing 5, 10, 15, and 20% of 3-cyanothiophene (CNT) incorporated in a random fashion with a regioregular linkage pattern (P3HT-CNT) were successfully synthesized via direct arylation polymerization (DArP). Unique reaction conditions, previously reported for P3HT, were used, which employ very low loadings of Pd(OAc)2 as a catalyst and an inexpensive bulky carboxylic acid (neodecanoic acid) as an essential part of the palladium catalytic center. The chemical structures and optoelectronic properties of DArP P3HTCNT polymers were found to be similar to those of previously investigated P3HT-CNT polymers synthesized via Stille polycondensation. All polymers are semicrystalline with high hole mobilities and UV-vis absorption profiles that resemble P3HT, while the polymer highest occupied molecular orbital (HOMO) level decreases with increasing content of cyanothiophene in both DArP and Stille P3HT-CNT polymers. In photovoltaic devices with a PC61BM acceptor, DArP P3HT-CNT copolymers showed slightly lower open-circuit voltages (V_(oc)) than their Stille P3HT-CNT analogues but similar fill factors (FF) and significantly enhanced shortcircuit current densities (J_(sc)), leading to overall power conversion efficiencies for the DArP polymers that rivaled or exceeded those of the Stille polymers. This work further emphasizes the generality and relevance of DArP for the synthesis of conjugated polymers for use in organic solar cells and the attractive simplicity and ease of synthesis of random conjugated polymers.
机译:成功合成了一种四族聚(3-己基噻吩)(P3HT)基共聚物,该共聚物含有5、10、15和20%的3-氰基噻吩(CNT),以无规方式结合有规则区域键合图案(P3HT-CNT)通过直接芳基化聚合(DArP)。使用了以前报道的有关P3HT的独特反应条件,该条件使用非常低的Pd(OAc)2负载量作为催化剂,而廉价的笨重羧酸(新癸酸)作为钯催化中心的重要组成部分。发现DArP P3HTCNT聚合物的化学结构和光电性能类似于先前研究的通过Stille缩聚合成的P3HT-CNT聚合物。所有聚合物均为半结晶,具有类似于P3HT的高空穴迁移率和UV-vis吸收曲线,而DArP和Stille P3HT-CNT聚合物中,随着氰基噻吩含量的增加,聚合物的最高占据分子轨道(HOMO)水平降低。在具有PC61BM受体的光伏器件中,DArP P3HT-CNT共聚物的开路电压(V_(oc))比其Stille P3HT-CNT类似物略低,但填充因子(FF)相似,短路电流密度(J_(sc )),从而导致DArP聚合物的整体功率转换效率可与Stille聚合物相媲美或超过后者。这项工作进一步强调了DArP在有机太阳能电池中使用的共轭聚合物合成的一般性和相关性,以及无规共轭聚合物合成的吸引力和简便性。

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