Ji Xiaozhou, Leng Mingwan, Xie Haomiao, Wang Chenxu, Dunbar Kim R, Zou Yang, Fang Lei
Department of Chemistry, Texas A&M University College Station TX 77843-3255 USA
Department of Materials Science and Engineering, Texas A&M University College Station TX 77843-3255 USA.
Chem Sci. 2020 Aug 6;11(47):12737-12745. doi: 10.1039/d0sc03348k.
Electrochemical stability and delocalization of states critically impact the functions and practical applications of electronically active polymers. Incorporation of a ladder-type constitution into these polymers represents a promising strategy to enhance the aforementioned properties from a fundamental structural perspective. A series of ladder-type polyaniline-analogous polymers are designed as models to test this hypothesis and are synthesized through a facile and scalable route. Chemical and electrochemical interconversions between the fully oxidized pernigraniline state and the fully reduced leucoemeraldine state are both achieved in a highly reversible and robust manner. The protonated pernigraniline form of the ladder polymer exhibits unprecedented electrochemical stability under highly acidic and oxidative conditions, enabling the access of a near-infrared light-absorbing material with extended polaron delocalization in the solid-state. An electrochromic device composed of this ladder polymer shows distinct switching between UV- and near-infrared-absorbing states with a remarkable cyclability, meanwhile tolerating a wide operating window of 4 volts. Taken together, these results demonstrate the principle of employing a ladder-type backbone constitution to impart superior electrochemical properties into electronically active polymers.
电化学稳定性和态的离域对电子活性聚合物的功能及实际应用有着至关重要的影响。将梯型结构引入这些聚合物中,从基本结构角度来看是一种增强上述性能的有前景的策略。设计了一系列梯型聚苯胺类似聚合物作为模型来验证这一假设,并通过简便且可扩展的路线进行合成。在完全氧化的过氮苯胺状态和完全还原的白翠绿苯胺状态之间的化学和电化学相互转化均以高度可逆且稳定的方式实现。梯型聚合物的质子化过氮苯胺形式在高酸性和氧化条件下展现出前所未有的电化学稳定性,使得能够获得一种在固态中具有扩展极化子离域的近红外光吸收材料。由这种梯型聚合物组成的电致变色器件在紫外吸收态和近红外吸收态之间表现出明显的切换,具有显著的循环稳定性,同时能耐受4伏的宽工作窗口。综上所述,这些结果证明了采用梯型主链结构赋予电子活性聚合物优异电化学性能的原理。