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首页> 外文期刊>Journal of Molecular Modeling >The structural, electronic, and optical properties of ladder-type polyheterofluorenes: a theoretical study
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The structural, electronic, and optical properties of ladder-type polyheterofluorenes: a theoretical study

机译:梯型聚杂芴的结构,电子和光学性质:理论研究

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The ladder-type polyheterofluorenes were investigated theoretically by using density functional theory (DFT) to reveal their optical and electronic properties for applications in organic optoelectronic devices. The incorporation of heteroatoms (B, Si, Ge, N, P, O, and S) into the ladder-type highly fused polyfluorene backbone can influence and modify the optoelectronic properties significantly. The functionalization on the heteroatoms allows for facile derivation and incorporation of substitutes to further tune the properties. Small geometry variations between the ground, anionic/cationic, the first excited singlet and triplet states were observed due to the very rigid ladder-type coplanar backbone. Ladder-type polycarbazole was predicted to have the highest HOMO and LUMO energy levels, polyphosphafluorene oxide have the lowest HOMO energy level, polyborafluorene have the lowest LUMO energy level and bandgap, and polysulfafluorene has the highest bandgap and triplet energy. The ladder-type carbazole and borafluorene show the highest hole and electron injection abilities respectively; while sulfafluorene has the highest electron transfer rate. Most ladder-type heterofluorenes show bipolar charge transport character suggested by the reorganization energy. All of them have significantly short effective conjugation length in comparison with linear conjugated polymers. Their absorption and emission spectra were also simulated and discussed. The diversified electronic and optical properties of the ladder-type polyheterofluorenes with the different incorporated heteroatom and the substituent on it indicate their broad potential applications in organoelectronics.
机译:通过使用密度泛函理论(DFT)从理论上研究了梯型聚杂芴,以揭示它们在有机光电器件中的光学和电子性能。将杂原子(B,Si,Ge,N,P,O和S)掺入梯型高度融合的聚芴骨架中可以显着影响和改变光电性能。杂原子上的官能化使得可以容易地衍生和引入取代基以进一步调节性质。由于非常刚性的梯形共面骨架,观察到了基态,阴离子/阳离子,第一激发单重态和三重态之间的小几何变化。梯形聚咔唑具有最高的HOMO和LUMO能级,聚氧化芴具有最低的HOMO能级,聚硼芴具有最低的LUMO能级和能带隙,而聚磺芴具有最高的带隙能和三重态能。阶梯型咔唑和硼芴分别具有最高的空穴注入能力和电子注入能力。而次氟芴具有最高的电子传输速率。多数梯型杂芴显示出重组能表明的双极电荷传输特性。与线性共轭聚合物相比,它们均具有明显短的有效共轭长度。还对它们的吸收和发射光谱进行了模拟和讨论。具有不同掺入杂原子和取代基的梯型聚杂芴的多样化电子和光学性质表明它们在有机电子学中的广泛应用潜力。

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