4.8 Review

Thermally drawn multifunctional fibers: Toward the next generation of information technology

期刊

INFOMAT
卷 4, 期 7, 页码 -

出版社

WILEY
DOI: 10.1002/inf2.12318

关键词

acoustoelectric fiber; biological probe; energy fiber; integrated circuit fiber; multifunctional fiber; optoelectronic fiber

资金

  1. A*STAR under AME IRG [A2083c0062]
  2. Funding of Innovation Academy for Light-duty Gas Turbine, Chinese Academy of Sciences [CXYJJ21-ZD-02]
  3. National Natural Science Foundation of China [51976215, 52172249, 62005101]
  4. Schaeffler Hub for Advanced Research at NTU, under the ASTAR IAF-ICP Programme [ICP1900093]
  5. Scientific Instrument Developing Project of the Chinese Academy of Sciences [YJKYYQ20200017]
  6. Singapore Ministry of Education Academic Research Fund Tier 1 [MOE2019-T1-001-103 (RG 73/19), MOE2019-T1-001-111 (RG 90/19)]
  7. Singapore Ministry of Education Academic Research Fund Tier 2 [MOET2EP50120-0002, MOE2019-T2-2-127]
  8. Singapore National Research Foundation Competitive Research Program [NRF-CRP18-2017-02]
  9. Nanyang Technological University

向作者/读者索取更多资源

Thermally drawn multifunctional fibers are a promising technology that integrates various functional materials into a single fiber, enabling complex functions such as photodetection, imaging, and chemical sensing. These fibers can also be used for applications in personal health monitoring and interpersonal communication.
As the fundamental building block of optical fiber communication technology, thermally drawn optical fibers have fueled the development and prosperity of modern information society. However, the conventional step-index configured silica optical fibers have scarcely altered since their invention. In recent years, thermally drawn multifunctional fibers have emerged as a new yet promising route to enable unprecedented development in information technology. By adopting the well-developed preform-to-fiber manufacturing technique, a broad range of functional materials can be seamlessly integrated into a single fiber on a kilometer length scale to deliver sophisticated functions. Functions such as photodetection, imaging, acoustoelectric detection, chemical sensing, tactile sensing, biological probing, energy harvesting and storage, data storage, program operation, and information processing on fiber devices. In addition to the original light-guiding function, these flexible fibers can be woven into fabrics to achieve large-scale personal health monitoring and interpersonal communication. Thermally drawn multifunctional fibers have opened up a new stage for the next generation of information technology. This review article summarizes an overview of the basic concepts, fabrication processes, and developments of multifunctional fibers. It also highlights the significant progress and future development in information applications.

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