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Trends in geometric and electronic properties of thiophene- and cyclopentadiene-based polymers

机译:噻吩和环戊二烯基聚合物的几何和电子性质趋势

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In this work, we present theoretical evidence illustrating that cyano derivatives of conducting polymers such as polythiophene, polycyclopentadiene, and polyfulvene have smaller intrinsic band gaps than those of their parent polymers. The geometric and electronic properties of the parent and the derivative polymers were studied with the use of two methodologies: (1) the pseudo-one-dimensional bandstructure calculations performed using the semi-empirical molecular orbital theory (MNDO, AM1) and (2) oligomer calculations performed using the ab initio molecular orbital theory both at the Hartree-Fock and configuration interaction levels. In particular, we found that an organic polymer, poly(dicyanomethylene cyclopentadifulvene) (PCNFv), has a comparable (possibly lower) band gap to the one observed in poly(dicyanomethylene cyclopentadithiophene) (PCNTH) (which has a band gap of 0.8 eV). The precursor of PCNFv is poly(dicyanomethylene cyclopentadicyclopentadiene) (PCNCY) in which two cyclopentadiene rings are connected by a dicyanomethylene group. The additional bond conjugation (in contrast to PCNCY) perpendicular to the chain axis makes PCNFv very rigid and fully planar. Trends in structural properties indicate that the lower band gaps in the cyano-substituted polymers, in comparison to their parent polymers, are accompanied by a decrease in bond alternations in the aromatic or trans-cisoid forms and by an increase in bond alternations in the quinoid or cis-transoid forms. (C) 1998 John Wiley & Sons, Inc. [References: 42]
机译:在这项工作中,我们提供的理论证据表明,导电聚合物(如聚噻吩,聚环戊二烯和聚富烯)的氰基衍生物具有比其母体聚合物更小的固有带隙。使用两种方法研究了母体和衍生物聚合物的几何和电子性质:(1)使用半经验分子轨道理论(MNDO,AM1)和(2)进行拟一维能带结构计算使用从头算分子轨道理论在Hartree-Fock和构型相互作用水平进行低聚物计算。特别地,我们发现有机聚合物聚二氰基亚甲基环戊二烯富烯(PCNFv)的带隙与聚二氰基亚甲基环戊二噻吩(PCNTH)(带隙为0.8 eV)所观察到的带隙相当(可能更低) )。 PCNFv的前体是聚(二氰基亚甲基环戊二环戊二烯)(PCNCY),其中两个环戊二烯环通过二氰基亚甲基连接。垂直于链轴的附加键共轭(与PCNCY相反)使PCNFv非常刚性且完全平坦。结构性质的趋势表明,与它们的母体聚合物相比,氰基取代的聚合物的较低带隙伴随着芳族或反式-顺式甾体形式的键交替的减少以及喹诺酮中键交替的增加。或顺-反式形式。 (C)1998 John Wiley&Sons,Inc. [参考:42]

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