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Effect of stretching on the structure and electrical conductivity of doped and undoped poly(phenylene vinylene) thin films

机译:拉伸对掺杂和未掺杂的聚亚苯基亚乙烯基薄膜结构和电导率的影响

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摘要

Impedance spectroscopy, X-ray diffraction, infrared dichroism and AFM imaging were used to investigate the effect of orientation and doping on the electrical properties of a series of stretched poly(phenylene vinylene) (PPV) films. The degree of orientation was determined by infrared dichroism. X-ray diffraction patterns clearly display a transition from random orientation to a high degree of orientation. Analysis of the AFM images indicates that a fibrillated structure was formed on the stretched films. Solid state impedance measurements of doped and undoped films were carried out parallel to and perpendicular to the stretch direction (i.e. in the through-plane direction) in an attempt to understand the effect of the fibrillar structure on the electrical properties. It was found that the bulk conductivity of undoped PPV in the through film thickness direction decreased with increasing orientation, while the conductivity of undoped PPV along the stretch direction is independent of orientation. Doping of the stretched PPV thin films with a 0.58 M FeCl{sub}3 solution for 10 min increased the conductivity by over two orders of magnitude.
机译:阻抗光谱,X射线衍射,红外二向色性和原子力显微镜成像用于研究取向和掺杂对一系列拉伸聚苯撑乙烯撑(PPV)薄膜电学性能的影响。取向度通过红外二色性确定。 X射线衍射图清楚地显示出从无规取向到高取向度的转变。对AFM图像的分析表明在拉伸膜上形成了原纤化结构。为了理解原纤维结构对电性能的影响,平行于和垂直于拉伸方向(即,在贯穿平面方向)进行了掺杂和未掺杂膜的固态阻抗测量。发现未掺杂的PPV在整个膜厚度方向上的体电导率随取向的增加而降低,而未掺杂的PPV沿拉伸方向的电导率与取向无关。用0.58 M FeCl {sub} 3溶液掺杂拉伸的PPV薄膜10分钟,可使电导率提高两个数量级。

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