返回
Electrospun nanofiber-based soft electronics
DOI:10.1038/s41427-020-00267-8.png)
摘要
En 中文
Electrospun nanofibers have received considerable attention in the field of soft electronics owing to their promising advantages and superior properties in flexibility and/or stretchability, conductivity, and transparency; furthermore, their one-dimensional nanostructure, high surface area, and diverse fibrous morphologies are also desirable. Herein, we provide an overview of electrospun nanofiber-based soft electronics. A brief introduction of the unique structure and properties of electrospun nanofiber materials is provided, and assembly strategies for flexible/stretchable electronics are highlighted. We then summarize the latest progress in the design and fabrication of representative flexible/stretchable electronic devices utilizing electrospun nanofibers, such as flexible/stretchable conductors, sensors, energy harvesting and storage devices, and transistors. Finally, a conclusion and several future research directions for electrospun nanofiber-based soft electronics are proposed. Flexible electronics: Spinning fibers for wearable technologyThe development of low-cost, efficient, and large-scale methods for fabricating 'soft' electronics, conducting materials with improved flexibility and stretchability, increases the range of possible applications. Flexible electronics are useful for foldable displays, healthcare monitoring, artificial skins and implantable bioelectronics. One approach to fabricating these devices is to construct them from conductive nanofibers. Takao Someya from the University of Tokyo and colleagues review recent advances in constructing nanofiber-based soft electronics using a technique called electrospinning. Electrospinning works by drawing a molten material through a nozzle into an electric field to produce strands much finer than a human hair. The authors review the structure and properties of electrospun nanofiber materials and the various strategies for assembling flexible and stretchable electronic devices such as sensors, transistors, and components for energy harvesting and storage. This review introduce the structure and properties of electrospun nanofiber materials and the various strategies for assembling soft electronic devices such as sensors, transistors, and components for energy harvesting and storage.
Keyword:
FIELD-EFFECT TRANSISTORS
HIGH-PERFORMANCE
CARBON NANOFIBERS
STRAIN SENSOR
FLEXIBLE SUPERCAPACITOR
TRANSPARENT ELECTRODE
WEARABLE ELECTRONICS
POLYMER NANOFIBERS
ARTIFICIAL SKIN
NEW-GENERATION
AI总结
对已上传原文的论文进行重点信息的提取,主要内容包括:简要概述、研究摘要、背景介绍、关键亮点、图文解析、展望与总结。
期刊
IF:
8.3
论文数:
1.2K
被引数:
8.1K
机构
引用论文
A stretchable carbon nanotube strain sensor for human-motion detection用于人体运动检测的可拉伸碳纳米管应变传感器
NATURE NANOTECHNOLOGY
IF34.9
Stretchable active-matrix organic light-emitting diode display using printable elastic conductors使用可印刷弹性导体的可拉伸有源矩阵有机发光二极管显示器
NATURE MATERIALS
IF38.5
A Novel Method for Applying Reduced Graphene Oxide Directly to Electronic Textiles from Yarns to Fabrics一种将还原的氧化石墨烯直接应用于从纱线到织物的电子纺织品的新方法
ADVANCED MATERIALS
IF26.8
High-Strain Sensors Based on ZnO Nanowire/Polystyrene Hybridized Flexible Films基于ZnO纳米线/聚苯乙烯杂化柔性薄膜的高应变传感器
ADVANCED MATERIALS
IF26.8

