Department of Macromolecular Science and Engineering, Virginia Tech, Blacksburg, Virginia 24061, USA.
ACS Appl Mater Interfaces. 2009 Jan;1(1):83-9. doi: 10.1021/am8000264.
Water-soluble silsesquioxane nanoparticles (NPs) incorporating viologen groups (PXV; 1,1'-bis[3-(trimethoxysilyl)propyl]-4,4'-bipyridinium iodide) have been synthesized by sol-gel polymerization. The electrochromic properties of the bulk film fabricated by layer-by-layer (LbL) assembly have been examined, along with their incorporation into solid-state devices. The orange LbL films show high thermal stability and exhibit a maximum UV-vis absorption at 550 nm. Electrochromic switching of the NPs in liquid electrolyte as well as in the solid state was evaluated by a kinetic study via measurement of the change in transmission (% T) at the maximum contrast. Cyclic voltammograms of the PXV NP LbL films exhibit a reversible reduction at -0.6 V vs Ag/AgCl in a 0.1 M NaClO4(aq) solution, revealing good electrochromic stability, with a color change from orange to dark purple-blue at applied potentials ranging from -0.7 to -1.3 V. Cathodically coloring PXV NP solid-state devices exhibit a switching time of a few seconds between the purple-blue reduced state and the orange oxidized state, showing a contrast of 50% at 550 nm and a coloration efficiency of 205 cm2/C. Their solubility and fairly fast electrochromic switching ( approximately 3 s) at low switching voltages (between 0 and 3.0 V), along with their stability under atmospheric conditions, make PXV NPs good candidates for electrochromic displays.
水溶性硅倍半氧烷纳米粒子(NPs)结合了紫精基团(PXV;1,1'-双[3-(三甲氧基硅基)丙基]-4,4'-联吡啶碘化物),通过溶胶-凝胶聚合合成。通过层层(LbL)组装制备了块状薄膜,并对其进行了电致变色性能的研究,同时也将其纳入了固态器件中。橙色的 LbL 薄膜具有较高的热稳定性,在 550nm 处显示出最大的紫外-可见吸收。通过测量最大对比度处透射率(%T)的变化,对 NPs 在液态电解质和固态中的电致变色开关进行了动力学研究。在 0.1M NaClO4(aq)溶液中,PXV NP LbL 薄膜的循环伏安图在 -0.6V 相对于 Ag/AgCl 呈现可逆还原,显示出良好的电致变色稳定性,施加的电位范围从-0.7 到-1.3V 时,颜色从橙色变为深紫色-蓝色。阴极着色的 PXV NP 固态器件在紫色-还原态和橙色-氧化态之间的开关时间为几秒钟,在 550nm 处的对比度为 50%,显色效率为 205cm2/C。它们的溶解度和相当快的电致变色开关(约 3s)在低开关电压(0 到 3.0V 之间),以及在大气条件下的稳定性,使 PXV NPs 成为电致变色显示器的良好候选材料。