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首页> 外文期刊>Polymer: The International Journal for the Science and Technology of Polymers >Anisotropic photoconductivity of aromatic and semi-aliphatic polyimide films: Effects of charge transfer, molecular orientation, and polymer chain packing
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Anisotropic photoconductivity of aromatic and semi-aliphatic polyimide films: Effects of charge transfer, molecular orientation, and polymer chain packing

机译:芳族和半脂族聚酰亚胺膜的各向异性光电导性:电荷转移,分子取向和聚合物链包装的影响

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摘要

The anisotropic photoconductive properties of polyimide (PI) films prepared using seven types of dianhydrides and a diamine containing a diphenyl-benzidine structure featuring rigid linear structure and strong electron-donating ability were analyzed. Photoirradiation wavelength dependences of the in-plane and out-of-plane photocurrents, which are known as anisotropic photocurrent spectra, were investigated in comparison with optical absorption spectra, the degrees of molecular aggregation, in-plane/out-of-plane orientation of PI chains, and ordered structures formed in film state. We have previously reported that intermolecular charge transfer (CT) interaction is a key factor for increasing the out-of-plane photoconductivity of PI films because they determine the efficiency of charge separation. However, when sufficient charge carriers are generated in thin PI films via photo irradiation, in which penetration depth of irradiated light is sufficiently larger than the film thickness, suppression of charge recombination by reducing molecular chain packing is rather effective at enhancing both the in-plane and out-of-plane photoconductivity. This is because the mobility of carriers is significantly increased in the dense aggregation structures, and thus collisions between carriers becomes more frequent, which led to higher recombination efficiency. Furthermore, the photocurrent anisotropy was increased as the degree of in-plane orientation of the main PI chains increased, which agrees with the fact that charged carriers are preferentially transported between PI chains. Accordingly, promoting charge transport efficiency by reducing PI chain packing and increasing the out-of-plane orientation of PI chains are essential to increase the inplane photoconductivity of PI films.
机译:分析了使用七种二酐制备的聚酰亚胺(PI)膜的各向异性光电导性能和含有含有刚性线性结构的二苯基 - 苯并苯甲丝结构的二胺和强电子捐赠能力。与光学吸收光谱,分子聚集度,平面内/外平面外取向相比,研究了平面内和外平面光电流的平面内和面外光电流的波长依赖性。 PI链条,并在胶片状​​态下形成的有序结构。我们之前报道的是,分子间电荷转移(CT)相互作用是增加PI薄膜的平面外光电导性的关键因素,因为它们确定了电荷分离的效率。然而,当通过照片照射中的薄PI膜中产生足够的电荷载流子时,照射光的穿透深度足够大于膜厚度,通过减少分子链填充抑制电荷重组在增强平面内相当有效和外平面的光电导性。这是因为载流子的迁移性在致密聚集结构中显着增加,因此载流子之间的碰撞变得更频繁,这导致了更高的重组效率。此外,随着主PI链的面内取向增加,光电流各向异性增加,这与充电载体优先在PI链之间传输的事实相同。因此,通过减少PI链填充并增加PI链的外平面取向来提高PI链的面外取向来提高PI薄膜的平面光电导性来促进电荷传输效率。

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