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首页> 外文期刊>Journal of the American Chemical Society >Solution-Processable Electrochemiluminescent Ion Gels for Flexible, Low-Voltage, Emissive Displays on Plastic
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Solution-Processable Electrochemiluminescent Ion Gels for Flexible, Low-Voltage, Emissive Displays on Plastic

机译:可通过溶液处理的电化学发光离子凝胶,可用于塑料上的柔性,低压,发光显示器

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摘要

Ion gels comprising ABA triblock copolymers and ionic liquids have received much attention as functional materials in numerous applications, especially as gate dielectrics in organic transistors. Here we have expanded the functionality of ion gels by demonstrating low-voltage, flexible electrochemiluminescent (ECL) devices using patterned ion gels containing redox-active lumino-phores. The ECL devices consisted only of a 30 μm thick emissive gel and two electrodes and were fabricated on indium tin oxide-coated substrates (e.g., polyester) simply by solution-casting the ECL gel and brush-painting a top Ag electrode. The triblock copolymer employed in the gel was polystyrene-block-poly(methyl methacry-late)-block-polystyrene, where the solvophobic polystyrene end blocks associate into micellar cross-links in the versatile ionic liquid 1-ethyl-3-methylimidazolium bis(trifluoromethylsulfonyl)imide ([EMI][TFSI]). An ECL gel containing ~6.25 wt % Ru(bpy)_3Cl_2 (relative to [EMI][TFSI]) as the luminophore turned on at an AC peak-to-peak voltage as low as 2.6 V (i.e., -1.3 to +1.3 V) and showed a relatively rapid response (sub-ms). The wavelength of maximum emission was 610 nm (red-orange). With the use of an iridium(Ⅲ) complex, Ir(diFppy)_2(bpy)PF_6 [diFppy = 2-(2',4'-difluorophenyl)pyridine; bpy = 2,2'-bipyridyl], the emitting color was tuned to a maximum wavelength of 540 nm (green). Moreover, when a blended luminophore system containing a 60:40 mixture of Ru(bpy)_3~(2+) and Ir(diFppy)_2(bpy)~+ was used in the emissive layer, the luminance of red-orange-colored light was enhanced by a factor of 2, which is explained by the generation of the additional excited state Ru(bpy)_3~(2+*) by a coreactant pathway with Ir(diFppy)_2(bpy)~(+*) in addition to the usual annihilation pathway. This is the first time that enhanced ECL has been achieved in ion gels (or ionic liquids) using a coreactant. Overall, the results indicate that ECL ion gels are attractive multifunctional materials for printed electronics.
机译:包含ABA三嵌段共聚物和离子液体的离子凝胶在许多应用中作为功能材料受到了广泛关注,特别是在有机晶体管中用作栅极电介质。在这里,我们通过使用包含氧化还原活性发光体的带图案的离子凝胶来演示低压,柔性电化学发光(ECL)设备,从而扩展了离子凝胶的功能。 ECL器件仅由30μm厚的发射凝胶和两个电极组成,仅通过溶液浇铸ECL凝胶并刷涂顶部Ag电极即可在氧化铟锡涂层的基材(例如聚酯)上制造。凝胶中使用的三嵌段共聚物是聚苯乙烯-嵌段-聚(甲基丙烯酸甲酯)-嵌段-聚苯乙烯,其中疏溶剂性聚苯乙烯末端嵌段在通用离子液体1-乙基-3-甲基咪唑鎓双(三氟甲基磺酰基)酰亚胺([EMI] [TFSI])。包含〜6.25 wt%Ru(bpy)_3Cl_2(相对于[EMI] [TFSI])作为发光体的ECL凝胶在低至2.6 V的AC峰-峰值电压(即-1.3至+1.3)下打开五),并显示出相对较快的响应(亚毫秒)。最大发射波长为610 nm(橙色)。使用铱(Ⅲ)配合物,Ir(diFppy)_2(bpy)PF_6 [diFppy = 2-(2',4'-二氟苯基)吡啶; bpy = 2,2'-bipyridyl],则将发射颜色调整为最大波长540 nm(绿色)。此外,当在发射层中使用包含Ru(bpy)_3〜(2+)和Ir(diFppy)_2(bpy)〜+的60:40混合物的混合发光体系统时,红橙色的亮度光增强了2倍,这可以解释为通过与Ir(diFppy)_2(bpy)〜(+ *)的共反应物途径生成额外的激发态Ru(bpy)_3〜(2 + *)除了通常的歼灭途径。这是首次使用共反应剂在离子凝胶(或离子液体)中实现增强的ECL。总体而言,结果表明ECL离子凝胶是用于印刷电子产品的有吸引力的多功能材料。

著录项

  • 来源
    《Journal of the American Chemical Society》 |2014年第9期|3705-3712|共8页
  • 作者单位

    Department of Chemical Engineering and Materials Science, University of Minnesota, 421 Washington Avenue SE, Minneapolis, Minnesota 55455, United States;

    Department of Chemical Engineering and Materials Science, University of Minnesota, 421 Washington Avenue SE, Minneapolis, Minnesota 55455, United States ,Department of Chemistry, University of Minnesota, 207 Pleasant Street SE, Minneapolis, Minnesota 55455, United States;

    Department of Chemical Engineering and Materials Science, University of Minnesota, 421 Washington Avenue SE, Minneapolis, Minnesota 55455, United States;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
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