Recent Advances and Challenges Toward Application of Fibers and Textiles in Integrated Photovoltaic Energy Storage Devices
Последние достижения и проблемы применения волокон и текстильных материалов в интегрированных фотоэлектрических устройствах хранения энергии
2023-01-20
SCID: 54.1/3k8m87gn
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energy harvestingfiber-based electronic devicesflexible microelectronic devicesintegrated photovoltaic energy storagetextile electronics
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Abstract (AI)
Flexible microelectronic devices have seen an increasing trend toward development of miniaturized, portable, and integrated devices as wearable electronics which have the requirement for being light weight, small in dimension, and suppleness. Traditional three-dimensional (3D) and two-dimensional (2D) electronics gadgets fail to effectively comply with these necessities owing to their stiffness and large weights. Investigations have come up with a new family of one-dimensional (1D) flexible and fiber-based electronic devices (FBEDs) comprising power storage, energy-scavenging, implantable sensing, and flexible displays gadgets. However, development and manufacturing are still a challenge owing to their small radius, flexibility, low weight, weave ability and integration in textile electronics. This paper will provide a detailed review on the importance of substrates in electronic devices, intrinsic property requirements, fabrication classification and applications in energy harvesting, energy storage and other flexible electronic devices. Fiber- and textile-based electronic devices for bulk/scalable fabrications, encapsulation, and testing are reviewed and presented future research ideas to enhance the commercialization of these fiber-based electronics devices.
Key Findings
1
Fiber-based electronic devices span power storage, energy harvesting, implantable sensing, flexible displays, and other wearable applications.
2
Fiber-based one-dimensional electronic devices address wearable-electronics requirements for low weight, miniaturization, flexibility, and textile integration better than conventional two- and three-dimensional devices.
3
Future research should prioritize bulk fabrication and improved integration to advance commercialization of fiber- and textile-based electronics.
4
Small radius, mechanical flexibility, low weight, weaveability, scalable manufacturing, encapsulation, and testing remain major development challenges.
5
The review identifies substrate properties, fabrication approaches, and integration strategies as central factors governing fiber- and textile-based electronic-device performance.
Research Object
fiber- and textile-based integrated photovoltaic energy storage devices
Research Subject
substrate requirements, fabrication, integration, encapsulation, testing, and commercialization challenges of fiber- and textile-based electronic devices
Publication Details
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2023-01-20
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