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首页> 外文期刊>The Journal of Chemical Physics >Temperature dependent exciton emission from herringbone aggregates of conjugated oligomers
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Temperature dependent exciton emission from herringbone aggregates of conjugated oligomers

机译:共轭低聚物的人字形聚集体的温度依赖性激子发射

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In this work, the effect of temperature, exciton bandwidth, and size on the photoluminescence spectra of defect-free two-dimensional herringbone aggregates of pi-conjugated oligomers such as oligophenylene vinylene and oligothiophene is investigated theoretically. The model is based on exciton-phonon coupling in two-dimensional herringbone lattices with the exciton deriving from the lowest optical (1A(g)-->1B(u)) transition and the phonon from the most strongly coupled intramolecular vibrational mode with frequency omega(0). Simple analytical expressions are obtained for the line strengths of the emission origin (0-0) and first replica (0-1) as a function of the number of molecules comprising the aggregate, N, the free exciton bandwidth, W-D, and the temperature, T. At a given temperature, the 0-0 emission intensity initially scales as N/N-th, where N-th is the superradiant threshold number, but eventually converges to N-T/N-th, where N-T is the size independent thermal coherence number. N-T is inversely proportional to temperature and proportional to the exciton band curvature (omega(c)) near the band bottom; N-T=1+4piomega(c)/k(b)T. In striking contrast, the 0-1 line strength is relatively insensitive to temperature and size, but scales as the inverse square of W-D+omega(0). The insensitivity of the first replica to the exciton coherence number makes the ratio of the 0-0 to 0-1 line strengths a measure of the exciton coherence number. The ratio can be used to test for crystal purity. Comparison to experiments on thin films of quaterthiophene shows that the thermal coherence size is given by N(T)approximate to1+450/T (K) and that superradiance, which requires N-T>N-th, can only be observed at temperatures less than 1 K. (C) 2004 American Institute of Physics. [References: 60]
机译:在这项工作中,从理论上研究了温度,激子带宽和尺寸对pi共轭低聚物(如低聚亚苯基亚乙烯基和低聚噻吩)的无缺陷二维人字形骨料的光致发光光谱的影响。该模型基于二维人字形格子中的激子-声子耦合,其中激子来自最低的光学(1A(g)-> 1B(u))跃迁,而声子则来自频率最强的分子内振动模式Ω(0)。对于发射源(0-0)和第一复制品(0-1)的线强度,可以得到简单的分析表达式,该线强度是包含聚集体,N,自由激子带宽,WD和温度的分子数量的函数在给定温度下,0-0发射强度最初按N / N-th缩放,其中N-th是超辐射阈值,但最终收敛到NT / N-th,其中NT是尺寸无关的热相干数。 N-T与温度成反比,与带底部附近的激子带曲率(omega(c))成正比; N-T = 1 + 4piomega(c)/ k(b)T与之形成鲜明对比的是,0-1线强度对温度和尺寸相对不敏感,但与W-D +ω(0)的平方成反比。第一个复制品对激子相干数的不敏感性使0-0与0-1线强度之比成为激子相干数的度量。该比率可用于测试晶体纯度。与四氟噻吩薄膜上的实验进行比较表明,热相干尺寸由N(T)近似为1 + 450 / T(K)给出,并且需要NT> N-th的超辐射只能在低于25°C的温度下观察到1 K.(C)2004美国物理研究所。 [参考:60]

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