Fiber‐Shaped Electronic Devices
Электронные устройства волоконной формы
2021-07-23
SCID: 54.1/uhebreg8
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electronic fibersfiber-shaped electronicssmart clothingtextile electronicswearable electronics
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Abstract (AI)
Abstract Textile electronics embedded in clothing represent an exciting new frontier for modern healthcare and communication systems. Fundamental to the development of these textile electronics is the development of the fibers forming the cloths into electronic devices. An electronic fiber must undergo diverse scrutiny for its selection for a multifunctional textile, viz., from the material selection to the device architecture, from the wearability to mechanical stresses, and from the environmental compatibility to the end‐use management. Herein, the performance requirements of fiber‐shaped electronics are reviewed considering the characteristics of single electronic fibers and their assemblies in smart clothing. Broadly, this article includes i) processing strategies of electronic fibers with required properties from precursor to material, ii) the state‐of‐art of current fiber‐shaped electronics emphasizing light‐emitting devices, solar cells, sensors, nanogenerators, supercapacitors storage, and chromatic devices, iii) mechanisms involved in the operation of the above devices, iv) limitations of the current materials and device manufacturing techniques to achieve the target performance, and v) the knowledge gap that must be minimized prior to their deployment. Lessons learned from this review with regard to the challenges and prospects for developing fiber‐shaped electronic components are presented as directions for future research on wearable electronics.
Key Findings
1
Fiber-shaped electronics are identified as foundational components for integrating multifunctional textile electronics into clothing for healthcare and communication applications.
2
Knowledge gaps and unresolved challenges are highlighted, with research directions proposed for deploying fiber-shaped electronic components in wearable electronics.
3
Processing strategies and current device architectures are surveyed across fiber-shaped light emitters, solar cells, sensors, nanogenerators, supercapacitors, and chromatic devices.
4
The article explains operating mechanisms while identifying limitations in existing materials and manufacturing methods that prevent target performance.
5
The review defines performance requirements spanning material selection, device architecture, wearability, mechanical stress resistance, environmental compatibility, and end-of-use management.
Research Object
fiber-shaped electronic devices and their assemblies for integration into smart clothing
Research Subject
their performance requirements, operating mechanisms, materials and manufacturing limitations, wearability, mechanical and environmental compatibility, and deployment prospects
Publication Details
Publication Date
2021-07-23
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