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首页> 外文期刊>Solar Energy Materials and Solar Cells: An International Journal Devoted to Photovoltaic, Photothermal, and Photochemical Solar Energy Conversion >Synthesis and electrochromic properties of soluble 4,9-dihydro-s-indaceno [1,2-b:5,6-b '] dithiophene-embedded conjugated polymers and their applications on preparing green-to-transmissive electrochromics via solution co-processing
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Synthesis and electrochromic properties of soluble 4,9-dihydro-s-indaceno [1,2-b:5,6-b '] dithiophene-embedded conjugated polymers and their applications on preparing green-to-transmissive electrochromics via solution co-processing

机译:可溶性4,9-二氢-S-吲吻酮的合成和电致变色性能[1,2-B:5,6-B']二噻吩包封的共轭聚合物及其在通过溶液共加工制备绿色透射电致铬学的应用

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In this work, six soluble polymers based on 4,9-dihydro-s-indaceno[1,2-b:5,6-b'] dithiophene (IDT) and various electron-deficient moieties were synthesized via Stille coupling reaction. Aromatic cycles such as benzene (Ph), naphthalene (Na), and anthracene (An) incorporated into the polymer chain induce steric hindrance and generate strongly hypsochromic effect to achieve short-wavelength absorption band. As a result, one of the synthesized polymer (P(IDT-Na)) presents a single absorption peak at 433 nm and yellow color in the neutral state, which can turn into highly transmissive blue upon oxidation. On the other hand, due to the strong electrondeficient characteristics of 2,1,3-benzothidiazole (Tz), P(IDT-Tz) presents low band gap and very strong absorption located at long-wavelength visible band to give the neutral polymer a blue color. All these synthesized polymers also possess good properties. Then, these yellow and blue-to-transmissive ECPs are chosen for generating green-to-transmissive electrochromics via solution co-processing. The derived co-processed mixtures present desirably fine-tuning green color with the blending ratios, and excellent switching properties. Additionally, electrochromic devices based on these mixtures on ITO glass and flexible PET also give and confirm the fine-tuning of green color behavior and high-performance properties, implying that the blending strategy on soluble ECPs can be an efficient way for subtle green color control.
机译:在这项工作中,通过STIZH偶联反应合成了基于4,9-二氢-S-Indaceno [1,2-B:5,6-B']二噻吩(IDT)和各种电子缺陷部分的六种可溶性聚合物。芳族循环如苯(pH),萘(Na)和含有聚合物链中的蒽(An)诱导空间阻断并产生强烈的低温效果以实现短波长吸收带。结果,合成的聚合物(P(IDT-NA))中的一种在中性状态下以433nm和黄色的黄色呈现单个吸收峰,其在氧化时可以变成高度透射的蓝色。另一方面,由于2,1,3-苯并噻唑(TZ)的强电髂特性,P(IDT-TZ)具有位于长波长可见带的低带隙和非常强的吸收,以给予中性聚合物a蓝色。所有这些合成的聚合物也具有良好的性质。然后,选择这些黄色和蓝色到透射的ECP,用于通过解决方案共处理产生绿透透射电致化学。衍生的共处理混合物具有良好的微调绿色,具有混合比率,以及出色的切换性能。此外,基于这些混合物的电致变色器件在ITO玻璃和柔性PET上还提供了绿色行为和高性能特性的微调,暗示可溶性ECPS上的混合策略可以是微妙的绿色控制的有效方法。

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