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首页> 外文期刊>Physical chemistry chemical physics: PCCP >The synthesis of new double-donor chromophores with excellent electro-optic activity by introducing modified bridges
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The synthesis of new double-donor chromophores with excellent electro-optic activity by introducing modified bridges

机译:通过引入修饰的桥来合成具有优异电光活性的新型双供体生色团

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A series of chromophores y1-y3 based on the same bis(N, N-diethyl) aniline donor and the tricyanofuran acceptor (TCF) linked together via the modified thiophene pi-conjugation with different isolated groups have been synthesized and systematically investigated in this paper. Density functional theory (DFT) was used to calculate the HOMO-LUMO energy gaps and first-order hyperpolarizability (beta) of these chromophores. Besides, to determine the redox properties of these chromophores, cyclic voltammetry (CV) experiments were performed. After introducing the isolation group into the thiophene, reduced energy gaps of 1.03 and 1.02 eV were obtained for chromophores y2 and y3, respectively, much lower compared to chromophore y1 (Delta E = 1.13 eV). These chromophores showed better thermal stability with their decomposition temperatures all above 220 degrees C. Besides, compared with results obtained from the chromophore (y1) without the isolated group, these new chromophores show better intramolecular charge-transfer (ICT) absorption. Most importantly, the high molecular hyperpolarizability (b) of these chromophores can be effectively translated into large electro-optic (EO) coefficients (r(33)) in poled polymers. The electro-optic coefficient of poled films containing 25% wt of these new chromophores doped in amorphous polycarbonate (APC) afforded values of 149, 139 and 125 pm V-1 at 1310 nm for chromophores y1-y3, respectively. Besides, when the concentration was increased, the film containing chromophores y1 and y3 showed obvious phase separation, while the film with chromophore y2 showed the maximum r33 value of 146 pm V-1. Moreover, the electro-optic film prepared with these new chromophores showed greater stability. High r33 values indicated that the double donors of the bis(N, N-diethyl) aniline unit can efficiently improve the electron-donating ability and the isolated groups on the thiophene bridge can reduce intermolecular electrostatic interactions, thus enhancing the macroscopic EO activity. These properties, together with the good solubility, suggest the potential use of these new chromophores as advanced material devices.
机译:合成了一系列基于相同双(N,N-二乙基)苯胺供体和三氰呋喃受体(TCF)的发色团y1-y3,它们通过修饰的噻吩π-缀合与不同的分离基团连接在一起,并在本文中进行了系统地研究。 。密度泛函理论(DFT)用于计算这些生色团的HOMO-LUMO能隙和一阶超极化率(beta)。此外,为了确定这些生色团的氧化还原性质,进行了循环伏安法(CV)实验。将隔离基团引入噻吩后,发色团y2和y3的能隙分别减小了1.03和1.02 eV,比发色团y1的能隙要低得多(ΔE = 1.13 eV)。这些生色团在高于220摄氏度的分解温度下均表现出更好的热稳定性。此外,与未分离基团的生色团(y1)获得的结果相比,这些新生色团表现出更好的分子内电荷转移(ICT)吸收。最重要的是,这些发色团的高分子超极化性(b)可以有效地转化为极化聚合物中的大电光(EO)系数(r(33))。含25%wt的这些新发色团掺杂在无定形聚碳酸酯(APC)中的极化膜的电光系数在1310 nm下分别为发色团y1-y3提供149、139和125 pm V-1的值。此外,当浓度增加时,含发色团y1和y3的膜表现出明显的相分离,而含发色团y2的膜表现出的最大r33值为146 pm V-1。而且,用这些新生色团制备的电光膜显示出更大的稳定性。高r33值表明,双(N,N-二乙基)苯胺单元的双供体可以有效地提高电子给体能力,噻吩桥上的孤立基团可以减少分子间的静电相互作用,从而增强宏观的EO活性。这些特性以及良好的溶解性表明这些新型生色团可作为先进的材料设备。

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