整改
神经形态工程学
计算机科学
合并(版本控制)
纳米技术
材料科学
电致变色
数码产品
能源消耗
离子键合
可穿戴技术
电势能
功率密度
高效能源利用
能量密度
可积系统
水溶液
电
计算机体系结构
相容性(地球化学)
炸薯条
功率消耗
高能
储能
系统集成
分布式计算
电子工程
可穿戴计算机
能量(信号处理)
离子
能量转换
工作(物理)
电气工程
物联网
能量收集
化学能
低能
作者
Siyuan Ye,Lijie Han,Yu Meng,Long Chen,Yaowu Li,Shan Cong,Guan Wu,Qichong Zhang
摘要
ABSTRACT The growing adoption of wearable electronics is spurring the development of lightweight, highly integrable fabric systems. These systems are required to seamlessly merge multiple functions, including energy storage, signal rectification and neuromorphic computing. However, integrating these diverse functionalities into a single fiber structure remains a significant challenge, primarily due to material compatibility issues and distinct operational mechanisms. To address this challenge, we present the novel fiber-shaped aqueous dual-ion batteries (FADIBs) composed of a CuHCF/CNTF cathode, an Ag/CNTF anode and an NH4Cl/PVA gel electrolyte. This dual-ion configuration serves as a unified platform that inherently combines these typically disparate functions. Specifically, the FADIBs achieve a high energy density of 51.5 mWh cm−3 and an exceptional ionic rectification ratio of up to 109, facilitated by asymmetric ion migration. It also emulates artificial synaptic behavior with an ultra-low energy consumption of only 7.5 fJ per synaptic event. Furthermore, the versatility of the FADIBs allows integration into various fabric-based functional modules, demonstrating applications in energy harvesting, power supply and synaptic-controlled electrochromic regulation. This work establishes FADIBs as a foundational technology for multifunctional integration, providing prescient insights for future fabric systems that unify energy management, intelligent perception and information processing.
科研通智能强力驱动
Strongly Powered by AbleSci AI