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Flexible Electronics: A Critical Review

数码产品 可伸缩电子设备 柔性电子器件 灵活性(工程) 互连 基质(水族馆) 灵活的显示器 印刷电子产品 纳米技术 电气工程 工程类 材料科学 电信 图层(电子) 地质学 薄膜晶体管 统计 海洋学 数学
作者
Gulafsha Bhatti,Yash Agrawal,Vinay S. Palaparthy,Kavicharan Mummaneni,Meenu Agrawal
标识
DOI:10.1007/978-981-99-4476-7_13
摘要

Progressive changes are occurring at an unprecedented rate in the field of electronics, science, and technology. The conviction and evolutionary development of flexible electronics have been incredibly witnessed in recent years. Flexible electronics or flex circuits refer to technology that can be mounted onto the adaptable substrate. Flexible electronics comprises varying splendid properties such as flexibility, bending, rolling, folding, and stretching without losing its functionality. These characteristics are not fulfilled by present conventional electronic-based systems. Flexible electronics is highly beneficial in varying applications and used in several upcoming devices such as wearable gadgets, medical and industrial products, flexible sensors, and displays. Evolvement of flexible electronics has led to extensive research and development in flexible substrates and stretchable interconnects. Flexible substrate holds the flexible electronics. The substrate materials can be conductive polymers, organic semiconductors, graphene derivatives, and amorphous silicon. Further, to withstand large deformation, stretchable interconnects provide the overall flexibility to the electronic system. The interconnects are the connection between various components to transmit and receive signals. The foremost challenge in developing flexible electronics is not to lose electrical functionality of the stretchable interconnect along with providing good mechanical stability. The purpose of this chapter is to review and address various flexible electronics modules such as components required, relevant materials, interconnect geometries, its electrical and mechanical properties, printing techniques along with its promising applications. Finally, the market growth and potential future research directions have also been discussed in the chapter.
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