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首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Improved synthesis and photovoltaic performance of donor-acceptor copolymers based on dibenzothiophene-cored ladder-type heptacyclic units
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Improved synthesis and photovoltaic performance of donor-acceptor copolymers based on dibenzothiophene-cored ladder-type heptacyclic units

机译:基于二苯并噻吩为核心的梯型七环单元的供体-受体共聚物的合成和光伏性能的改善

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摘要

We have developed a facile synthetic route to a ladder-type donor unit (SDCT) wherein two outer thiophene subunits are covalently fastened to the central dibenzothiophene core through two sp(3)-hybridized bridging carbons. An innovative transformation from an aryl ketone group to an aryl ester group was applied to construct the ladder-type molecular skeleton, and the overall synthetic yield toward the donor unit has been significantly improved by choosing aryl side chains instead of aliphatic ones to avoid competing dehydration reactions. To reveal the effects of pi-spacers and heteroatom substituents, three donor-acceptor (D-A) copolymers containing SDCT and acceptor units of 2,1,3-benzothiadiazole (BT), 2,1,3-benzoxadiazole (BO), or 4,7-bis(2-thienyl)-2,1,3-benzothiadiazole (DTBT) were synthesized, characterized and used for polymer solar cells (PSCs). All polymers exhibit blue-shifted absorption spectra and deeper-lying HOMO energy levels compared to the previous carbazole-based skeleton analogues. In comparison with its analogous polymer with the same p-conjugated backbone, the polymer with alkoxy-substituted BT as the acceptor unit (PSBT) shows an order of magnitude higher OFET mobility (1.8 x 10(-4) versus 1.25 x 10(-5) cm(2) V-1 s(-1)). An optimal device based on PSBT: PC71BM (1/3 in wt%) delivers a respectable PCE of 5.18% and a high V-OC of 0.94 V, all of which are superior to those of the carbazole-based analogue (PCE = 3.7%, V-OC = 0.80 V) and greatly surpass the values of a previously reported dibenzothiophene-based polymer (PCE = 0.76%, V-OC = 0.64 V). These results demonstrate that SDCT is a promising building block for constructing photovoltaic polymers and the synthetic strategy developed herein can be used to prepare other dibenzothiophene-cored ladder-type heptacyclic units.
机译:我们已经开发了一种容易的合成路线,以梯形供体单元(SDCT),其中两个外部噻吩亚基通过两个sp(3)杂化的桥连碳共价固定在中心二苯并噻吩核心上。从芳基酮基团到芳基酯基团的创新转化被用于构建梯型分子骨架,并且通过选择芳基侧链而不是脂肪族侧链来避免竞争性脱水,显着提高了向供体单元的总合成产率。反应。为了揭示pi间隔基和杂原子取代基的影响,三种包含SDCT和2,1,3-苯并噻二唑(BT),2,1,3-苯并恶二唑(BO)或4的受体单元的施主-受主(DA)共聚物合成了7,7-双(2-噻吩基)-2,1,3-苯并噻二唑(DTBT),表征并用于聚合物太阳能电池(PSC)。与以前的咔唑类骨架类似物相比,所有聚合物均表现出蓝移的吸收光谱和更深的HOMO能级。与具有相同p共轭骨架的类似聚合物相比,以烷氧基取代的BT作为受体单元(PSBT)的聚合物显示出较高的OFET迁移率(1.8 x 10(-4)比1.25 x 10(- 5)cm(2)V-1 s(-1))。基于PSBT的最佳器件:PC71BM(1/3重量%)可提供5.18%的可观PCE和0.94 V的高V-OC,所有这些均优于咔唑类类似物(PCE = 3.7) %,V-OC = 0.80V)并且大大超过先前报道的基于二苯并噻吩的聚合物的值(PCE = 0.76%,V-OC = 0.64V)。这些结果证明SDCT是用于构建光伏聚合物的有前途的构建基块,并且本文开发的合成策略可用于制备其他以二苯并噻吩为核心的梯型七环单元。

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