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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Electronic Structures and Optical Properties of p-Type/n-Type Polymer Blends: Density Functional Theory Study
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Electronic Structures and Optical Properties of p-Type/n-Type Polymer Blends: Density Functional Theory Study

机译:p型/ n型聚合物共混物的电子结构和光学性质:密度函数理论研究

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摘要

A blend made of p-type and n-type polymers can act as bipolar/ambipolar material composites that transport both electrons and holes. Although several experimental efforts are currently devoted to p-/n-type blends of conducting polymers, theoretical studies of these systems are missing to a large extent. In the current paper, using the density functional theory (DFT) and the time-dependent DFT, we calculate electronic and optical properties of a p-type/n-type polymeric blend, where we have chosen the poly(3,4-ethylenedioxythiophene)/benzimidazo-benzophenanthroline ladder (PEDOT/BBL) as a model composite system. We demonstrate that in the blend, PEDOT acts as an electron donor and BBL acts as an electron acceptor under doped conditions. However, no charge transfer between the chains takes place for an undoped composite system. Due to a significant difference in the electron affinities and the ionization energies of PEDOT and BBL, the electronic properties of a negatively (positively) doped PEDOT/BBL blend are primarily governed by the chains where negative (positive) charges are localized, i.e., the BBL chains (the PEDOT chains). However, this is no longer valid for the optical absorption where the electronic transition occurs between the two chains and, therefore, the calculated UV-vis-near-infrared (NIR) absorption spectra of the negatively (positively) doped PEDOT/BBL blend are rather different compared to the corresponding spectra of the single BBL chains (PEDOT chains). The electronic coupling between the photoexcited state and the final charge-transfer state of the blend was calculated to be similar to 0.08 eV. The results presented here are generic to a wide class of p-type/n-type combinations, which was further confirmed by calculations performed on the polythiophene (PT)/BBL blend.
机译:由p型和n型聚合物制成的混合物可以充当双极/非胆材料复合材料,其运输电子和孔。虽然目前对导电聚合物的P-/ N型混合物进行了几种实验努力,但这些系统的理论研究在很大程度上缺失。在目前的纸张中,使用密度函数理论(DFT)和时间依赖性DFT,我们计算了P型/ n型聚合物共混物的电子和光学性质,其中我们选择了聚(3,4-亚乙二氧基噻吩)/ Benzimidazo-苯并聚蒽咯锭(PEDOT / BBL)作为模型复合系统。我们证明,在混合物中,PEDOT作为电子给体和BBL作为掺杂条件下的电子受体。但是,未掺杂的复合系统,将在链之间进行电荷转移。由于铅圈和BBL的电子亲和力和电离能量差异,所以赋予赋予掺杂的佩特/ BBL混合物的电子性质主要由负(正)电荷局部的链条管辖,即BBL链条(PEDOT链条)。然而,这不再适用于在两条链之间发生电子转换的光学吸收,因此,所计算的UV-Vis-ind-红外(NIR)的负(正面)掺杂的PEDOT / BBL混合物是与单个BBL链的相应光谱(PEDOT链)相比不同。光屏蔽状态和混合物的最终电荷转移状态之间的电子耦合以类似于0.08eV。此处呈现的结果是通用于宽等类的p型/ n型组合,其通过对聚噻吩(Pt)/ bbl混合物进行的计算进一步证实。

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