Ling Huan, Zhang Junsen, Wang Yu, Zeng Xiping
International Collaborative Laboratory of 2D Materials for Optoelectronics Science and Technology of Ministry of Education, Institute of Microscale Optoelectronics, Shenzhen University, Shenzhen, China; Research and Development Center, Shenzhen Huake-Tek Co., Ltd., Shenzhen, China.
Research and Development Center, Shenzhen Huake-Tek Co., Ltd., Shenzhen, China.
J Colloid Interface Sci. 2024 Jul;665:969-976. doi: 10.1016/j.jcis.2024.03.131. Epub 2024 Mar 21.
Electrochromic devices (ECD) are widely used to regulate the transmittance of sunlight by applying a small voltage, but the drawbacks like complex layer-by-layer preparation procedures and inconvenient assembling process still exist. To address these problems, gel or solution-type all-in-one ECDs were recently developed for the simple structure, however, the leakage risk and absence of flexible large-area production have limited real applications. Herein, a novel all-solid-state and all-in-one flexible ECD was reported by originally developed polymer dispersed electrochromic device (PDECD) strategy. This all-solid-state flexible ECD could be efficiently prepared only by one step of phase separation without any extra treatment, and demonstrated outstanding stability (92.1 % of original ΔT remained after 10,000 cycles), high coloration efficiency (197 cm/C), low power consumption (86.4 μW/cm) and satisfied response time (≤12 s). Meanwhile, the stored power in ECD during coloring process could drive a LED with excellent cyclic stability (93 % of original capacity remained after 3000 cycles), implying that ECD could also serve as an idea electrochromic supercapacitor. What'more, a reported largest viologen-based all-solid-state flexible ECD (17.8 × 13.2 cm) with robust bending resistance (up to 1000 bending cycles) was successfully fabricated with industrial roller coating technique, which indicated the huge potential in real world.
电致变色器件(ECD)通过施加小电压被广泛用于调节太阳光的透过率,但诸如复杂的逐层制备程序和不便的组装过程等缺点仍然存在。为了解决这些问题,凝胶或溶液型一体化ECD最近因其结构简单而被开发出来,然而,泄漏风险和缺乏柔性大面积生产限制了其实际应用。在此,通过最初开发的聚合物分散电致变色器件(PDECD)策略报道了一种新型的全固态一体化柔性ECD。这种全固态柔性ECD仅通过一步相分离就能高效制备,无需任何额外处理,并表现出出色的稳定性(10000次循环后仍保留92.1%的原始ΔT)、高着色效率(197 cm/C)、低功耗(86.4 μW/cm)和令人满意的响应时间(≤12 s)。同时,ECD在着色过程中存储的电能可以驱动一个具有出色循环稳定性的发光二极管(3000次循环后仍保留93%的原始容量),这意味着ECD也可以作为一种理想的电致变色超级电容器。此外,采用工业辊涂技术成功制备了报道中最大的基于紫精的全固态柔性ECD(17.8×13.2 cm),其具有强大的抗弯曲性(高达1000次弯曲循环),这表明其在现实世界中的巨大潜力。