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Elastomeric Light Emitting Polymer Enhanced by Interpenetrating Networks

机译:互穿网络增强的弹性体发光聚合物

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Conjugated polymers containing long-chain alkyl side groups for solubility are generally unstretchable: large strain induces crack formation, fracture, or plastic deformation. When the polymers are stretched to reorient the conjugated chains along the stretching direction, high dichroic ratio is observed both for absorption of the ground state and radiative decay of the excited state. Here an interpenetrating polymer network (IPN) approach is reported to impart elastomeric deformability to a conjugated polymer. A soluble alkyloxy phenyl substituted poly(1,4-phenylenevinylene) (SY-PPV) with bright yellow fluorescent emission was admixed with an ionically conductive medium containing poly(ethylene oxide), exoxylated trimethylol-propanetriacrylate, and lithium trifluoromethanesulfonate. The spin-cast blend film formed an IPN morphology wherein SY-PPV forms a porous network with pores filled by the ionic medium. PeakForce quantitative nanomechanical mapping showed that the local Young's modulus was high in the SY-PPV phase, while the ionic phase was two-times softer. No global polarization of the SY-PPV chains was observed at strains up to 100% as the dichroic ratio remains close to 1. Light-emitting devices based on the blend sandwiched between two stretchable transparent composite electrodes could be stretched by up to 140% strain. No electroluminescence polarization was observed.
机译:含有长链烷基侧基以提高溶解度的共轭聚合物通常不可拉伸:大应变会导致裂纹形成,断裂或塑性变形。当将聚合物拉伸以使共轭链沿着拉伸方向重新取向时,对于基态的吸收和激发态的辐射衰减,观察到高的二向色比。在这里,据报道互穿聚合物网络(IPN)方法赋予共轭聚合物以弹性变形性。将具有亮黄色荧光发射的可溶性烷氧基苯基取代的聚(1,4-亚苯基亚乙烯基)(SY-PPV)与包含聚环氧乙烷,过氧化的三羟甲基丙烷三丙烯酸酯和三氟甲烷磺酸锂的离子导电介质混合。旋涂共混膜形成IPN形态,其中SY-PPV形成多孔网络,其孔被离子介质填充。 PeakForce定量纳米力学图谱显示,SY-PPV相中的局部杨氏模量较高,而离子相则软两倍。当分色比保持接近1时,在高达100%的应变下未观察到SY-PPV链的整体极化。基于夹在两个可拉伸透明复合电极之间的共混物的发光器件可被拉伸高达140%的应变。没有观察到电致发光偏振。

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