Howard Elin L, Österholm Anna M, Shen D Eric, Panchumarti L Prerana, Pinheiro Carlos, Reynolds John R
School of Chemistry and Biochemistry, School of Materials Science and Engineering, Center for Organic Photonics and Electronics, Georgia Tech Polymer Network, Georgia Institute of Technology, Atlanta, Georgia 30332, United States.
Ynvisible Interactive Inc., Engesserstrasse 4a, 79108 Freiburg im Breisgau, Germany.
ACS Appl Mater Interfaces. 2021 Apr 14;13(14):16732-16743. doi: 10.1021/acsami.1c00463. Epub 2021 Mar 31.
Electrochromic (EC) materials and devices provide a user-controlled, dynamic way of displaying information using low power, making them interesting for a range of applications in numerous markets, including logistics, retail, consumer goods, and health care. To optimize the cost while simplifying the production, expanding the color space, and enhancing the contrast and vibrancy of EC displays aimed for cost-sensitive products, we sought to reduce the number of layers as well as remove the underlying conducting layer that accounts for a substantial fraction of the cost of a printed label. Here, we show how conjugated electrochromic polymers, which are inherently semiconducting, can be used to accomplish this goal and afford printable EC displays with a flexible form factor. Using a combination of electrochemical probes, in situ spectroscopy, solid-state conductivity, and in situ conductance measurements, we have studied and compared five different EC polymers with conductivities spanning multiple orders of magnitude and colors that span most of the visible range, identifying polymers and properties that allow for switching from the colored to the clear state without an underlying conducting layer. Finally, we incorporate these EC polymers into optimized flexible devices without an underlying conductor and demonstrate that they are able to provide on-demand, reversible colored-to-clear switching on the order of seconds to minutes, with operating voltages below ±1 V, optical memories exceeding 60 min, and a shelf-life exceeding 12 months.
电致变色(EC)材料和器件提供了一种由用户控制的、使用低功耗动态显示信息的方式,这使得它们在包括物流、零售、消费品和医疗保健在内的众多市场的一系列应用中颇具吸引力。为了在简化生产的同时优化成本、扩大色彩空间,并增强面向成本敏感型产品的电致变色显示器的对比度和鲜艳度,我们试图减少层数,并去除占印刷标签成本很大一部分的底层导电层。在此,我们展示了本质上具有半导体性质的共轭电致变色聚合物如何能够实现这一目标,并提供具有灵活外形的可印刷电致变色显示器。通过结合使用电化学探针、原位光谱、固态电导率和原位电导测量,我们研究并比较了五种不同的电致变色聚合物,它们的电导率跨越多个数量级,颜色覆盖了大部分可见光范围,从而确定了无需底层导电层就能从有色状态切换到透明状态的聚合物及其特性。最后,我们将这些电致变色聚合物集成到没有底层导体的优化柔性器件中,并证明它们能够在几秒钟到几分钟的时间内按需提供可逆的有色到透明切换,工作电压低于±1 V,光学记忆超过60分钟,并具有超过12个月的保质期。