Department of Chemical and Biomolecular Engineering, Yonsei University , 50 Yonsei-ro, Seodaemun-gu, Seoul 03722, Korea.
ACS Nano. 2017 Jul 25;11(7):6977-6984. doi: 10.1021/acsnano.7b02294. Epub 2017 Jun 21.
Silver mirror patterns were formed reversibly on a polystyrene (PS)-patterned electrode to produce gratings through the electrochemical reduction of silver ions. The electrochemical gratings exhibited high transparency (T > 95%), similar to a see-through window, by matching the refractive index of the grating pattern with the surrounding medium. The gratings switch to a diffractive state upon the formation of a mirror pattern (T < 5%) with a high diffraction efficiency up to 40%, providing reversible diffractive gratings. The diffraction state was maintained in the voltage-off state (V-off) for 40 min, which demonstrated bistable reversible electrochemical grating (BREG) behavior. By carefully combining the BREGs through period matching, dual-color switching was achieved within the full color region, which exhibited three distinct optical switching states between -2.5, 0, and +2.5 V. The wide range of light tenability using the metallic BREGs developed herein enabled IR modulation, NIR light reflection, and on-demand heat transfer.
银镜图案在聚苯乙烯(PS)图案化电极上可逆形成,通过电化学还原银离子产生光栅。电化学光栅通过将光栅图案的折射率与周围介质相匹配,实现了高透明度(T > 95%),类似于透明窗口。当形成镜图案时(T < 5%),光栅切换到衍射状态,衍射效率高达 40%,提供了可逆的衍射光栅。在电压关闭状态(V-off)下,衍射状态可保持 40 分钟,表现出双稳定可逆电化学光栅(BREG)行为。通过仔细地将 BREG 组合在一起,通过周期匹配实现了全彩色区域内的双色切换,在-2.5、0 和+2.5 V 之间显示了三种不同的光学切换状态。本文开发的金属 BREG 具有广泛的可调谐性,可以实现 IR 调制、近红外光反射和按需热传递。