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首页> 外文期刊>Journal of the American Chemical Society >Soluble narrow band gap and blue propylenedioxythiophene-cyanovinylene polymers as multifunctional materials for photovoltaic and electrochromic applications
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Soluble narrow band gap and blue propylenedioxythiophene-cyanovinylene polymers as multifunctional materials for photovoltaic and electrochromic applications

机译:可溶性窄带隙和蓝色丙烯二氧噻吩-氰基亚乙烯基聚合物作为光伏和电致变色应用的多功能材料

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摘要

A family of soluble narrow band gap donor- acceptor conjugated polymers based on dioxythiophenes and cyanovinylenes is reported. The polymers were synthesized using Knoevenagel polycondensation or Yamamoto coupling polymerizations to yield polymers with molecular weights on the order of 10000-20000 g/mol, which possess solubility in common organic solvents. Thin film optical measurements revealed narrow band gaps of 1.5-1.8 eV, which gives the polymers a strong overlap of the solar spectrum. The energetic positions of the band edges were determined by cyclic voltammetry and differential pulse voltammetry and demonstrate that the polymers are both air stable and show a strong propensity for photoinduced charge transfer to fullerene acceptors. Such measurements also suggest that the polymers can be both p- and n-type doped, which is supported by spectroelectrochemical results. These polymers have been investigated as electron donors in photovoltaic devices in combination with PCBM ([6,6]-phenyl C-61-butyric acid methyl ester) as an electron acceptor based on the near ideal band structures designed into the polymers. Efficiencies as high as 0.2% (AM1.5) with short circuit current densities as high as 1.2-1.3 mA/cm(2) have been observed in polymer/PCBM (1: 4 by weight) devices and external quantum efficiencies of more than 10% have been observed at wavelengths longer than 600 nm. The electrochromic properties of the narrow band gap polymers are also of interest as the polymers show three accessible color states changing from an absorptive blue or purple in the neutral state to a transmissive sky-blue or gray in the oxidized and reduced forms. The wide electrochemical range of electrochromic activity coupled with the strong observed changes in transmissivity between oxidation states makes these materials potentially interesting for application to electrochromic displays.
机译:报道了基于二氧噻吩和氰基亚乙烯基的一类可溶性窄带隙供体-受体共轭聚合物。使用Knoevenagel缩聚或Yamamoto偶联聚合来合成聚合物,以产生分子量为10000-20000g / mol的聚合物,其在普通有机溶剂中具有溶解性。薄膜光学测量显示1.5-1.8 eV的窄带隙,这使聚合物具有很强的太阳光谱重叠。通过循环伏安法和差分脉冲伏安法测定能带边缘的高能位置,证明该聚合物既是空气稳定的,又表现出很强的光诱导电荷转移到富勒烯受体的倾向。这样的测量还表明聚合物可以是p型和n型掺杂的,这由光谱电化学结果支持。基于聚合物中设计的近乎理想的带结构,已经研究了这些聚合物作为光伏器件中的电子给体,并结合了PCBM([6,6]-苯基C-61-丁酸甲酯)作为电子受体。在聚合物/ PCBM(重量比为1:4)设备中,观察到效率高达0.2%(AM1.5),短路电流密度高达1.2-1.3 mA / cm(2),外部量子效率超过在超过600 nm的波长处观察到10%。窄带隙聚合物的电致变色性质也是令人关注的,因为聚合物显示出三种可访问的颜色状态,从中性状态的吸收性蓝色或紫色变为氧化和还原形式的透射性天蓝色或灰色。电致变色活性的广泛的电化学范围,加上在氧化态之间观察到的透射率的强烈变化,使得这些材料对于应用于电致变色显示器具有潜在的吸引力。

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