Yun Tae Gwang, Park Minkyu, Kim Dong-Ha, Kim Donghyuk, Cheong Jun Young, Bae Jin Gook, Han Seung Min, Kim Il-Doo
Advanced Nanosensor Research Center , KAIST Institute for Nanocentury , Daejeon 305-701 , Republic of Korea.
ACS Nano. 2019 Mar 26;13(3):3141-3150. doi: 10.1021/acsnano.8b08560. Epub 2019 Feb 25.
Flexible and stretchable electrochromic supercapacitor systems are widely considered as promising multifunctional energy storage devices that eliminate the need for an external power source. Nevertheless, the performance of conventional designs deteriorates significantly as a result of electrode/electrolyte exposure to atmosphere as well as mechanical deformations for the case of flexible systems. In this study, we suggest an all-transparent stretchable electrochromic supercapacitor device with ultrastable performance, which consists of Au/Ag core-shell nanowire-embedded polydimethylsiloxane (PDMS), bistacked WO nanotube/PEDOT:PSS, and polyacrylamide (PAAm)-based hydrogel electrolyte. Au/Ag core-shell nanowire-embedded PDMS integrated with PAAm-based hydrogel electrolyte prevents Ag oxidation and dehydration while maintaining ionic and electrical conductivity at high voltage even after 16 days of exposure to ambient conditions and under application of mechanical strains in both tensile and bending conditions. WO nanotube/PEDOT:PSS bistacked active materials maintain high electrochemical-electrochromic performance even under mechanical deformations. Maximum specific capacitance of 471.0 F g was obtained with a 92.9% capacity retention even after 50 000 charge-discharge cycles. In addition, high coloration efficiency of 83.9 cm C was shown to be due to the dual coloration and pseudocapacitor characteristics of the WO nanotube and PEDOT:PSS thin layer.
柔性可拉伸电致变色超级电容器系统被广泛认为是很有前景的多功能储能设备,无需外部电源。然而,传统设计的性能会因电极/电解质暴露于大气以及柔性系统中的机械变形而显著恶化。在本研究中,我们提出了一种具有超稳定性能的全透明可拉伸电致变色超级电容器器件,它由嵌入金/银核壳纳米线的聚二甲基硅氧烷(PDMS)、双堆叠的WO纳米管/PEDOT:PSS以及基于聚丙烯酰胺(PAAm)的水凝胶电解质组成。嵌入金/银核壳纳米线的PDMS与基于PAAm的水凝胶电解质相结合,可防止银氧化和脱水,即使在暴露于环境条件16天后以及在拉伸和弯曲条件下施加机械应变时,仍能在高电压下保持离子和电导率。WO纳米管/PEDOT:PSS双堆叠活性材料即使在机械变形下也能保持高电化学 - 电致变色性能。即使在50000次充放电循环后,仍获得了471.0 F g的最大比电容,容量保持率为92.9%。此外,由于WO纳米管和PEDOT:PSS薄层的双色和赝电容特性,显示出83.9 cm C的高着色效率。