Xu Jianzhong, Ji Qi, Kong Lingqian, Du Hongmei, Ju Xiuping, Zhao Jinsheng
College of Chemistry and Environmental Science, Hebei University, Baoding 071002, China.
Department of Chemistry and Chemical Engineering, Liaocheng University, Liaocheng 252059, China.
Polymers (Basel). 2018 Apr 17;10(4):450. doi: 10.3390/polym10040450.
A series of π-conjugated polymers containing alternating benzoselenadiazole (BSe)-bi(thiophene derivative)-carbazole or benzoththiadiazole (BSe)-bi(thiophene derivative)-fluorene units were designed and synthesized. Thiophene derivatives, namely 3-hexylthiophene, 3,4-bihexyloxythiophene, and 3,4-bioctyloxythiophene, were used as the π-bridges of the polymers. The polymers were characterized in detail in terms of their thermal stabilities, cyclic voltammograms, UV-Vis absorption, spectroelectrochemistry, dynamic switching property and so forth. The alkoxy thiophene π-bridged polymers have lower onset oxidation potentials and bandgaps than that of their corresponding alkyl thiophene π-bridged polymers. The selection of the donor units between the carbazole and the fluorene units has nearly no effect on the bandgaps and colors as well as the onset oxidation potentials of the polymers. The increase in the length of the side alkyl chains on the thiophene ring caused a slight increase in the polymer bandgap, which may be caused by the space hindrance effect. The dynamic switching abilities of the polymers were obtained by the chronoabsorptometry method, and the results also suggested that the alkoxy thiophene-containing polymers (as π-bridges) have higher contrast ratios than the corresponding alkyl thiophene-containing polymers. Furthermore, the increase in the length of the side alkyl chain might have a detrimental effect on the optical contrast ratios of the polymers.
设计并合成了一系列含有交替苯并硒二唑(BSe)-联(噻吩衍生物)-咔唑或苯并噻二唑(BSe)-联(噻吩衍生物)-芴单元的π共轭聚合物。噻吩衍生物,即3-己基噻吩、3,4-双己氧基噻吩和3,4-双辛氧基噻吩,被用作聚合物的π桥。对这些聚合物在热稳定性、循环伏安图、紫外-可见吸收、光谱电化学、动态开关性能等方面进行了详细表征。与相应的烷基噻吩π桥聚合物相比,烷氧基噻吩π桥聚合物具有更低的起始氧化电位和带隙。咔唑单元和芴单元之间供体单元的选择对聚合物的带隙、颜色以及起始氧化电位几乎没有影响。噻吩环上侧链烷基链长度的增加导致聚合物带隙略有增加,这可能是由空间位阻效应引起的。通过计时吸收法获得了聚合物的动态开关能力,结果还表明含烷氧基噻吩的聚合物(作为π桥)比相应的含烷基噻吩的聚合物具有更高的对比度。此外,侧链烷基链长度的增加可能会对聚合物的光学对比度产生不利影响。