材料科学
纳米片
超级电容器
电容
制作
纳米材料
墨水池
纳米技术
储能
化学工程
镍
光电子学
氢氧化物
复合材料
电极
冶金
工程类
病理
物理化学
功率(物理)
物理
化学
医学
替代医学
量子力学
作者
Peipei Shi,Rong Chen,Hua Li,Li Li,Ruyi Chen,Yujiao Gong,Chenyang Yu,Jinyuan Zhou,Bin Liu,Gengzhi Sun,Wei Huang
标识
DOI:10.1002/adma.201703455
摘要
Abstract Solution‐based techniques are considered as a promising strategy for scalable fabrication of flexible electronics owing to their low‐cost and high processing speed. The key to the success of these techniques is dominated by the ink formulation of active nanomaterials. This work successfully prepares a highly concentrated two dimensional (2D) crystal ink comprised of ultrathin nickel hydroxide (Ni(OH) 2 ) nanosheets with an average lateral size of 34 nm. The maximum concentration of Ni(OH) 2 nanosheets in water without adding any additives reaches as high as 50 mg mL −1 , which can be printed on arbitrary substrates to form Ni(OH) 2 thin films. As a proof‐of‐concept application, Ni(OH) 2 nanosheet ink is coated on commercialized carbon fiber yarns to fabricate wearable energy storage devices. The thus‐fabricated hybrid supercapacitors exhibit excellent flexibility with a capacitance retention of 96% after 5000 bending–unbending cycles, and good weavability with a high volumetric capacitance of 36.3 F cm −3 at a current density of 0.4 A cm −3 , and an energy density of 11.3 mWh cm −3 at a power density of 0.3 W cm −3 . As a demonstration of practical application, a red light emitting diode can be lighted up by three hybrid devices connected in series.
科研通智能强力驱动
Strongly Powered by AbleSci AI