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Fiber-based wearable electronics : a review of materials, fabrication, devices, and applications

机译:基于纤维的可穿戴电子产品:材料,制造,设备和应用的综述

摘要

Fiber-based structures are highly desirable for wearable electronics that are expected to be light-weight, long-lasting, fl exible, and conformable. Many fi brous structures have been manufactured by well-established lost-effective textile processing technologies, normally at ambient conditions. The advancement of nanotechnology has made it feasible to build electronic devices directly on the surface or inside of single fi bers, which have typical thickness of several to tens microns. However, imparting electronic functions to porous, highly deformable and three-dimensional fi ber assemblies and maintaining them during wear represent great challenges from both views of fundamental understanding and practical implementation. This article attempts to critically review the current state-of-arts with respect to materials, fabrication techniques, and structural design of devices as well as applications of the fi ber-based wearable electronic products. In addition, this review elaborates the performance requirements of the fi ber-based wearable electronic products, especially regarding the correlation among materials, fi ber/textile structures and electronic as well as mechanical functionalities of fi ber-based electronic devices. Finally, discussions will be presented regarding to limitations of current materials, fabrication techniques, devices concerning manufacturability and performance as well as scientifi c understanding that must be improved prior to their wide adoption.
机译:基于纤维的结构对于可穿戴电子设备是高度期望的,可穿戴电子设备预期是轻量的,持久的,易弯曲的和舒适的。通常在环境条件下,通过成熟的,失去作用的纺织品加工技术已经制造了许多纤维结构。纳米技术的进步使得直接在单纤维的表面或内部构建电子设备变得可行,这些电子设备的典型厚度为几到几十微米。然而,从基本的理解和实际实施的角度来看,赋予多孔,高度可变形的三维纤维组件电子功能并在磨损过程中对其进行维护是巨大的挑战。本文试图从材料,制造技术,设备的结构设计以及基于光纤的可穿戴电子产品的应用等方面来审视当前的最新技术水平。此外,本文还详细阐述了基于纤维的可穿戴电子产品的性能要求,特别是关于基于纤维的电子设备的材料,纤维/纺织结构与电子以及机械功能之间的相关性。最后,将讨论有关当前材料,制造技术,涉及可制造性和性能的设备以及科学认识方面的局限性,在广泛采用之前必须加以改进。

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