The George and Josephine Butler Polymer Research Laboratory, Department of Chemistry, Center for Macromolecular Science and Engineering, University of Florida, Gainesville, Florida 32611, USA.
ACS Appl Mater Interfaces. 2012 Dec;4(12):6512-21. doi: 10.1021/am3015394. Epub 2012 Dec 7.
This paper describes the synthesis of two new blue to transmissive donor-acceptor electrochromic polymers: a polymer synthesized using an alternating copolymerization route (ECP-Blue-A) and a polymer synthesized using a random copolymerization (ECP-Blue-R) by Stille polymerization. These polymers utilize side chains with four ester groups per donor moiety, allowing organic solubility in the ester form, and water solubility upon saponification to their carboxylate salt form. We demonstrate that the saponified polymer salts of ECP-Blue-A and ECP-Blue-R (WS-ECP-Blue-A and WS-ECP-Blue-R) can be processed from aqueous solutions into thin films by spray-casting. Upon the subsequent neutralization of the thin films, the resulting polymer acid films are solvent resistant and can be electrochemically switched between their colored state and a transmissive state in a KNO(3)/water electrolyte solution. The polymer acids, WS-ECP-Blue-A-acid and WS-ECP-Blue-R-acid, show electrochromic contrast Δ%T of 38% at 655 nm and 39% at 555 nm for a 0.5 s switch, demonstrating the advantage of an aqueous compatible electrochrome switchable in high ionic conductivity aqueous electrolytes. The results of the electrochromic properties study indicate that these polymers are promising candidates for aqueous processable and aqueous switching electrochromic materials and devices as desired for applications where environmental impact is of importance.
本文描述了两种新型蓝色至透明供体-受体电致变色聚合物的合成:一种通过交替共聚(ECP-Blue-A)合成的聚合物和一种通过 Stille 聚合(ECP-Blue-R)合成的聚合物。这些聚合物利用每一个给体部分带有四个酯基的侧链,使其在酯形式下具有有机溶解性,并在皂化后形成羧酸盐形式时具有水溶性。我们证明,ECP-Blue-A 和 ECP-Blue-R 的皂化聚合物盐(WS-ECP-Blue-A 和 WS-ECP-Blue-R)可以通过喷涂从水溶液中加工成薄膜。随后对薄膜进行中和,得到的聚合物酸膜具有耐溶剂性,可以在 KNO(3)/水电解质溶液中电化学地在其有色状态和透明状态之间切换。聚合物酸 WS-ECP-Blue-A-acid 和 WS-ECP-Blue-R-acid 在 655nm 处的电致变色对比度 Δ%T 为 38%,在 555nm 处为 39%,切换时间为 0.5s,这表明在高离子电导率的水性电解质中具有水溶性和可切换性的电致变色开关的优势。电致变色性能研究的结果表明,这些聚合物是用于水性处理和水性切换电致变色材料和器件的有前途的候选材料,因为它们在环境影响很重要的应用中具有重要意义。