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芴基给体-受体共轭共聚物中带隙、带宽和振子强度之间相关性的理论研究。

Theoretical study on the correlation between band gap, bandwidth, and oscillator strength in fluorene-based donor-acceptor conjugated copolymers.

作者信息

Hung Ying-Chieh, Jiang Jyh-Chiang, Chao Chi-Yang, Su Wei-Fang, Lin Shiang-Tai

机构信息

Department of Chemical Engineering, Department of Material Science and Engineering, National Taiwan University, Taipei, Taiwan.

出版信息

J Phys Chem B. 2009 Jun 18;113(24):8268-77. doi: 10.1021/jp9018603.

Abstract

There is a growing interest in developing low-band gap conjugated polymers via synthesis of copolymers containing alternating units of different pi-electron-donating/accepting capabilities. In this study, electronic and optical properties of conjugated copolymers containing fluorene and thiophene/cyclopentadithiophene derivatives are determined using density function theory and semiempirical ZINDO calculations. A remarkable linear correlation is found between the amount of charge transfer between the donor-acceptor pair, the band gap, the bandwidth, and the oscillator strength of S(0)-->S(1) electronic transition (ground state to first excited state) of the copolymers. Strong pi-electron withdrawing substituents, such as dicyanoethenyl and carbonyl groups, on the thiophene moiety effectively reduce the band gap of the copolymers. However, the reduction of band gap is frequently accompanied by a linear reduction in bandwidths and in the oscillator strength of S(0)-->S(1) transition. For very strong pi-electron withdrawing thiophene derivatives, the occurrence of maximum oscillator strength may even shift from S(0)-->S(1) to S(0)-->S(n>1) (ground state to a higher excited state), giving a blue shift in maxima absorption peak and a red shoulder in the UV-vis spectra as reported in recent experimental measurements. Therefore, the achievement of low band gap for conjugated polymers with alternating arrangement of pi-electron-donating/accepting moieties may be achieved at a cost of lowering electron mobility and optical efficiency and sometimes a blue-shift in the major optical (UV-vis) absorption.

摘要

通过合成包含具有不同π电子供体/受体能力的交替单元的共聚物来开发低带隙共轭聚合物的兴趣日益浓厚。在本研究中,使用密度泛函理论和半经验ZINDO计算来确定含芴和噻吩/环戊二噻吩衍生物的共轭共聚物的电子和光学性质。发现供体-受体对之间的电荷转移量、带隙、带宽以及共聚物的S(0)-->S(1)电子跃迁(基态到第一激发态)的振子强度之间存在显著的线性相关性。噻吩部分上的强π电子吸电子取代基,如二氰基乙烯基和羰基,有效地降低了共聚物的带隙。然而,带隙的降低常常伴随着带宽以及S(0)-->S(1)跃迁振子强度的线性降低。对于非常强的π电子吸电子噻吩衍生物,最大振子强度的出现甚至可能从S(0)-->S(1)转移到S(0)-->S(n>1)(基态到更高激发态),如最近实验测量报道的那样,在紫外可见光谱中产生最大吸收峰的蓝移和红色肩峰。因此,对于具有π电子供体/受体部分交替排列的共轭聚合物,实现低带隙可能是以降低电子迁移率和光学效率为代价的,并且有时在主要光学(紫外可见)吸收中出现蓝移。

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