Gicevicius Mindaugas, Bagdziunas Gintautas, Abduloglu Yasin, Ramanaviciene Almira, Gumusay Ogun, Ak Metin, Soganci Tugba, Ramanavicius Arunas
Department of Physical Chemistry, Faculty of Chemistry and Geosciences, Vilnius University, Naugarduko str. 24, Vilnius, Lithuania.
Department of Material Science and Electrical Engineering, Center for Physical Sciences and Technology, Saulėtekio av. 3, Vilnius, Lithuania.
Chemphyschem. 2018 Oct 19;19(20):2735-2740. doi: 10.1002/cphc.201800478. Epub 2018 Aug 7.
An electrochromic material based on azobenzene and 3,4-ethylenedioxythiophene (EDOT) semiconducting layer was electrochemically deposited on an indium tin oxide coated glass electrode. Chemical synthesis of the azobenzene and EDOT-based chromophore (DAE) and electrochemical formation of its corresponding polymer (pDAE) are reported. The electrochromic properties of the synthesized polymer pDAE were investigated by electrochemical and spectroelectrochemical methods. pDAE exhibited an optical bandgap of 1.82 eV and three distinct colored states in its reduced, neutral, and oxidized forms. The pDAE polymer showed 44 % optical contrast at 710 nm between its reduced and oxidized states and a fast electrochromic switching time of 1.0 s. The frontier molecular orbitals, Raman shifts, and semiconducting properties of this electrochromic polymer were evaluated by density functional theory calculations. The optical absorption bands of the polymer charged states were assigned and investigated.
一种基于偶氮苯和3,4-乙撑二氧噻吩(EDOT)半导体层的电致变色材料通过电化学沉积在氧化铟锡涂层玻璃电极上。报道了偶氮苯和基于EDOT的发色团(DAE)的化学合成及其相应聚合物(pDAE)的电化学形成。通过电化学和光谱电化学方法研究了合成聚合物pDAE的电致变色性能。pDAE在其还原态、中性态和氧化态下表现出1.82 eV的光学带隙和三种不同的颜色状态。pDAE聚合物在710 nm处其还原态和氧化态之间表现出44%的光学对比度以及1.0 s的快速电致变色切换时间。通过密度泛函理论计算评估了这种电致变色聚合物的前沿分子轨道、拉曼位移和半导体性能。对聚合物带电状态的光吸收带进行了归属和研究。