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Does the donor-acceptor concept work for designing synthetic metals? 1. Theoretical investigation of poly(3-cyano-3′-hydroxybithiophene

机译:施主-受主概念是否可用于设计合成金属? 1.聚(3-氰基-3'-羟基联噻吩)的理论研究

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摘要

Homo- and copolymers of hydroxythiophene and cyanothiophene have been investigated by employing density functional theory with the aim of determining the effect of donor-acceptor substitution on the electronic structure. The band gap of the copolymer is 0.11 eV smaller than that of polythiophene. Bandwidths of valence and conduction bands are reduced by 0.22 and 0.36 eV compared to polybithiophene. Conductivity after p- and n-doping could therefore be less than that of polythiophene. All properties of the copolymer are averages between those of the homopolymers. The charge separation between hydroxy- and cyano-substituted rings is 0.12 e in the neutral state and 0.13 e and the dication. The ionization potential and electron affinity of poly(hydroxythiophene) are 1.78 and 1.63 eV smaller than those of poly(cyanothiophene). According to the donor-acceptor concept, a decrease in band gap and an increase in bandwidths compared to the homopolymers should have resulted: We rationalize the absence of band broadening with reduced interaction between fragments with very different energies in agreement with perturbation theory.
机译:羟基噻吩和氰基噻吩的均聚物和共聚物已经通过采用密度泛函理论进行了研究,目的是确定供体-受体取代对电子结构的影响。共聚物的带隙比聚噻吩的带隙小0.11eV。与聚二噻吩相比,价带和导带的带宽分别减小了0.22和0.36 eV。因此,p和n掺杂后的电导率可能小于聚噻吩的电导率。共聚物的所有性质是均聚物之间的平均值。羟基和氰基取代的环之间的电荷间隔在中性状态下为0.12 e,在离子状态下为0.13 e。聚(羟基噻吩)的电离势和电子亲和力比聚(氰基噻吩)的电离势和电子亲和力小1.78和1.63 eV。根据施主-受主的概念,与均聚物相比,带隙的减少和带宽的增加将导致:与扰动理论相一致,我们合理地考虑了不存在谱带展宽,具有非常不同能量的片段之间相互作用减少的问题。

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  • 作者

    Salzner, U.;

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  • 年度 2002
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  • 原文格式 PDF
  • 正文语种 English
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