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首页> 外文期刊>The Journal of Chemical Physics >New insights on the nature of two-dimensional polarons in semiconducting polymers: Infrared absorption in poly(3-hexylthiophene)
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New insights on the nature of two-dimensional polarons in semiconducting polymers: Infrared absorption in poly(3-hexylthiophene)

机译:半导体聚合物中二维极化子性质的新见解:聚(3-己基噻吩)中的红外吸收

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Infrared absorption of positively charged polarons in conjugated polymer chains and π-stacked aggregates is investigated theoretically, employing a Holstein-based Hamiltonian which treats electronic coupling, electron-vibrational coupling, and disorder on equal footing. The spectra evaluated from the Hamiltonian expressed in a one- and two-particle basis set are essentially exact, insofar as the main, aromatic-quinoidal vibrational mode is treated fully nonadiabatically. Diagonal and off-diagonal (“paracrystalline”) disorder are resolved along the polymer axis (x) and the aggregate stacking axis (y). Disorder along the polymer axis selectively attenuates the x-polarized spectrum, which is dominated by the polaron peak P_1. Disorder along the stacking axis selectively attenuates the y-polarized spectrum, which is dominated by the lower-energy charge-transfer peak, DP_1. Calculated spectra are in excellent agreement with the measured induced-absorption and chargemodulation spectra, reproducing the peak positions and relative peak intensities within a line shape rich in vibronic structure. Our nonadiabatic approach predicts the existence of a weak, x-polarized peak P_0, slightly blueshifted from DP_1. The peak is intrinsic to single polymer chains and appears in a region of the spectrum where narrow infrared active vibrational modes have been observed in nonaggregated conjugated polymers. The polaron responsible for P_0 is composed mainly of twoparticle wave functions and cannot be accounted for in the more conventional adiabatic treatments.
机译:从理论上研究了基于荷斯坦的哈密顿量的共轭聚合物链和π堆积的聚集体中带正电的极化子的红外吸收,该哈密顿量在相同的基础上处理电子耦合,电子振动耦合和无序。从哈密顿量评估中,以一粒子和两粒子基集表示的光谱本质上是精确的,因为主要的芳族-喹啉振动模式已完全绝热处理。沿聚合物轴(x)和聚集体堆积轴(y)解决对角线和非对角线(“顺晶”)无序现象。沿着聚合物轴的无序选择性地衰减了x极化光谱,该光谱由极化子峰P_1主导。沿堆叠轴的无序选择性地衰减了y极化谱,该谱由较低能量的电荷转移峰DP_1主导。计算光谱与测得的诱导吸收光谱和电荷调制光谱非常吻合,可在富含振动电子的线形中再现峰位置和相对峰强度。我们的非绝热方法预测,存在弱的,x极化峰P_0,其从DP_1发生了蓝移。该峰是单个聚合物链固有的峰,并出现在未聚集的共轭聚合物中观察到窄红外活性振动模式的光谱区域中。负责P_0的极化子主要由两个粒子波函数组成,在更常规的绝热处理中无法解释。

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