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首页> 外文期刊>Physical Review, B. Condensed Matter >Electron-correlation-induced transverse delocalization and longitudinal confinement in excited states of phenyl-substituted polyacetylenes
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Electron-correlation-induced transverse delocalization and longitudinal confinement in excited states of phenyl-substituted polyacetylenes

机译:电子相关诱导的苯基取代的聚乙炔在激发态的横向离域和纵向约束

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摘要

Electron-electron interactions in general lead to both ground-state and excited-state confinement. We show, however, that in phenyl-substituted polyacetylenes electron-electron interactions cause enhanced delocalization of quasiparticles in the optically excited state from the backbone polyene chain into the phenyl groups, which in turn leads to enhanced confinement in the chain direction. This cooperative delocalization confinement lowers the energy of the one-photon state and raises the relative energy of the lowest two-photon state. The two-photon state is slightly below the optical state in monophenyl-substituted polyacetylenes, but above the optical state in diphenyl-substituted polyacetylenes, thereby explaining the strong photoluminescence of the latter class of materials. We present a detailed mechanism of the crossover in the energies of the one- and two-photon states in these systems. In addition, we calculate the optical-absorption spectra over a wide wavelength region, and make specific predictions for the polarizations of low- and high-energy transitions that can be tested on oriented samples. Within existing theories of light emission from pi -conjugated polymers, strong photoluminescence should be restricted to materials whose optical gaps are larger than that of transpolyacetylene. The present work shows that, conceptually at least, it is possible to have light emission from systems with smaller optical gaps. [References: 39]
机译:电子-电子相互作用通常导致基态和激发态约束。然而,我们表明,在苯基取代的聚乙炔中,电子-电子相互作用会导致处于光激发态的准粒子从主链多烯链进入苯基的离域增强,进而导致在链方向上的局限性增强。这种协作离域限制降低了单光子态的能量,并提高了最低的两光子态的相对能量。在单苯基取代的聚乙炔中,二光子态略低于光学态,但在二苯基取代的聚乙炔中,二光子态高于光学态,从而解释了后一种材料的强光致发光。我们提出了在这些系统中单光子态和两光子态能量交叉的详细机制。此外,我们计算了宽波长范围内的光吸收光谱,并对可以在定向样品上测试的低能量和高能量跃迁的偏振做出了具体预测。在现有的π共轭聚合物的发光理论中,强光致发光应限于光学间隙大于反式聚乙炔的光学间隙的材料。本工作表明,至少在概念上,有可能从光学间隙较小的系统发出光。 [参考:39]

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