首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >Tuning of electronic structures of poly(p-phenylenevinylene) analogues of phenyl, thienyl, furyl, and pyrrolyl by double-bond linkages of group 14 and 15 elements
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Tuning of electronic structures of poly(p-phenylenevinylene) analogues of phenyl, thienyl, furyl, and pyrrolyl by double-bond linkages of group 14 and 15 elements

机译:通过第14组和第15组元素的双键连接调整苯基,噻吩基,呋喃基和吡咯基的聚(对亚苯基亚乙烯基)类似物的电子结构

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摘要

We investigated electronic structures of four sets of monomers and polymers comprising of phenyl rings and five-membered hetero(aromatic) moieties connected with double-bond -X=X- linkages (X = CH, SiH, GeH, N, P, As) by density functional theory, time-dependent density functional theory, and periodic boundary condition calculations with B3LYP functional. Electronic structures of poly(p-phenylenevinylene) (PPV) analogues are primarily dominated by central double-bond moieties. The introduction of ethylene homologues with group 14 and 15 elements was demonstrated to be a promising approach to modify electronic structures of conjugated oligomers and polymers. Excitation energies of monomers with double-bond linkages were reduced by around 13-50% with respect to corresponding dimers of phenyl, thienyl, furyl, and pyrrolyl rings. Similarly, band gaps of poly(p-phenylene) and polythiophene were decreased by 0.3-0.9 eV upon the insertion of double-bond linkages. Furthermore, excitation energies of monomers presented decreasing trends when descending through groups 14 and 15. For group 14 ethylene homologues, the decreasing trend in the lowest excitation energies was rationalized by a progressively favoring of pi-sigma* interactions as descending X = CH, SiH, and GeH. Increasing p contents of central bonds along X = N, P, and As accounted for geometry features and the lowest excitation energies of group 15 species. A decrease in the extent of electronic communications between aromatic rings and -X=X- linkages within higher congeners was also revealed.
机译:我们研究了四组单体和聚合物的电子结构,这些单体和聚合物包括与双键-X = X-键(X = CH,SiH,GeH,N,P,As)连接的苯环和五元杂(芳族)部分通过密度泛函理论,随时间变化的密度泛函理论以及具有B3LYP泛函的周期性边界条件计算。聚(对亚苯基亚乙烯基)(PPV)类似物的电子结构主要由中央双键部分控制。已证明引入具有14和15族元素的乙烯同系物是修饰共轭低聚物和聚合物的电子结构的有前途的方法。相对于苯基,噻吩基,呋喃基和吡咯基环的相应二聚体,具有双键键合的单体的激发能降低了约13-50%。同样,插入双键后,聚对苯撑和聚噻吩的带隙减小了0.3-0.9 eV。此外,当通过第14和15组下降时,单体的激发能呈现下降趋势。对于第14组乙烯同系物,通过逐渐有利于pi-sigma *相互作用来合理化最低激发能的下降趋势,即X = CH,SiH下降和GeH。沿X = N,P和As的中心键的p含量增加,这说明了几何特征和15组物种的最低激发能。还揭示了芳香族环与高级同源物中的-X = X-键之间的电子通讯程度降低。

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