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Synthesis and Characterization of a 23-Dialkoxynaphthalene-Based Conjugated Copolymer via Direct Arylation Polymerization (DAP) for Organic Electronics

机译:直接电子化聚合(DAP)用于有机电子的23-二烷氧基萘基共轭共聚物的合成与表征

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摘要

Poly[(5,5’-(2,3-bis(2-ethylhexyloxy)naphthalene-1,4-diyl)bis(thiophene-2,2′-diyl))- -(2,1,3-benzothiadiazole-4,7-diyl)] (PEHONDTBT) was synthesized for the first time and through direct arylation polymerization (DAP) for use as p-donor material in organic solar cells. Optimized reaction protocol leads to a donor-acceptor conjugated polymer in good yield, with less structural defects than its analog obtained from Suzuki polycondensation, and with similar or even higher molecular weight than other previously reported polymers based on the 2,3-dialkoxynaphthalene monomer. The batch-to-batch repeatability of the optimized DAP conditions for the synthesis of PEHONDTBT was proved, showing the robustness of the synthetic strategy. The structure of PEHONDTBT was corroborated by NMR, exhibiting good solubility in common organic solvents, good film-forming ability, and thermal stability. PEHONDTBT film presented an absorption band centered at 498 nm, a band gap of 2.15 eV, and HOMO and LUMO energy levels of −5.31 eV and −3.17 eV, respectively. Theoretical calculations were performed to understand the regioselectivity in the synthesis of PEHONDTBT and to rationalize its optoelectronic properties. Bilayer heterojunction organic photovoltaic devices with PEHONDTBT as the donor layer were fabricated to test their photovoltaic performance, affording low power-conversion efficiency in the preliminary studies.
机译:聚[(5,5'-(2,3-双(2-乙基己氧基)萘-1,4-二基)双(噻吩-2,2'-二基))--(2,1,3-苯并噻二唑-首次并通过直接芳基化聚合(DAP)合成了4,7-二基]](PEHONDTBT),用作有机太阳能电池中的p供体材料。优化的反应方案可得到高收率的供体-受体共轭聚合物,其结构缺陷比其从Suzuki缩聚获得的类似物少,并且分子量与基于2,3-二烷氧基萘单体的其他先前报道的聚合物相近或更高。证明了用于合成PEHONDTBT的优化DAP条件的批次间可重复性,显示了该合成策略的鲁棒性。 PEHONDTBT的结构通过NMR证实,在普通有机溶剂中显示出良好的溶解性,良好的成膜能力和热稳定性。 PEHONDTBT薄膜的吸收带中心位于498 nm,带隙为2.15 eV,HOMO和LUMO能级分别为-5.31 eV和-3.17 eV。进行理论计算以了解PEHONDTBT合成中的区域选择性并使其光电性能合理化。制备了以PEHONDTBT作为施主层的双层异质结有机光伏器件,以测试其光伏性能,在初步研究中提供较低的功率转换效率。

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