Key Laboratory of Flexible Electronics and Institute of Advanced Materials, Jiangsu National Synergetic Innovation Center for Advanced Materials, Nanjing Tech University, Nanjing, 211800, China.
State Key Laboratory of Molecular Engineering of Polymers, Department of Macromolecular Science and Laboratory of Advanced Materials, Fudan University, Shanghai, 200438, China.
Small. 2019 May;15(18):e1805493. doi: 10.1002/smll.201805493. Epub 2019 Apr 4.
Flexible devices integrated with sensing and energy storage functions are highly desirable due to their potential application in wearable electronics and human motion detection. Here, a flexible film is designed in a facile and low-cost leaf templating process, comprising wrinkled carbon nanotubes (CNTs) as the conductive layer and patterned polydimethylsiloxane (PDMS) with bio-inspired microstructure as a soft substrate. Assembled from wrinkled CNTs on patterned PDMS film, a strain sensor is realized to possess sensitive resistance response against various deformations, producing a resistance response of 0.34%, 0.14%, and 9.1% under bending, pressing, and 20% strain, respectively. Besides, the strain sensor can reach a resistance response of 3.01 when stretched to 44%. Furthermore, through the electro-deposition of polyaniline, the CNTs film is developed into a supercapacitor, which exhibits a specific capacitance of 176 F g at 1 A g and a capacitance retention of 88% after 10 000 cycles. In addition, the fabricated supercapacitor shows super flexibility, delivering a capacitance retention of 98% after 180° bending for 100 cycles, 95% after 45° twisting for 100 cycles, and 98% after 100% stretching for 400 cycles. The superior capacitance stability demonstrates that the design of wrinkled CNTs-based electrodes fixed by microstructures is beneficial to the excellent electrochemical performance.
由于在可穿戴电子产品和人体运动检测方面的潜在应用,集成传感和储能功能的柔性器件备受关注。在这里,我们采用一种简单且低成本的叶片模板工艺设计了一种柔性薄膜,其包含作为导电层的褶皱碳纳米管(CNTs)和具有仿生微结构的图案化聚二甲基硅氧烷(PDMS)作为软基底。由图案化 PDMS 薄膜上的褶皱 CNTs 组装而成的应变传感器具有对各种变形的敏感电阻响应,在弯曲、按压和 20%应变下的电阻响应分别为 0.34%、0.14%和 9.1%。此外,当应变传感器拉伸至 44%时,其电阻响应可达 3.01。此外,通过聚苯胺的电沉积,将 CNTs 薄膜进一步开发成超级电容器,其在 1 A g 下的比电容为 176 F g,在 10 000 次循环后电容保持率为 88%。此外,所制备的超级电容器具有超柔韧性,在 180°弯曲 100 个循环后电容保持率为 98%,45°扭曲 100 个循环后电容保持率为 95%,100%拉伸 400 个循环后电容保持率为 98%。优异的电容稳定性表明,通过微结构固定褶皱 CNTs 基电极的设计有利于实现出色的电化学性能。