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Related Experiment Video

Updated: Jun 15, 2026

Microfluidic Fabrication of Polymeric and Biohybrid Fibers with Predesigned Size and Shape
07:38

Microfluidic Fabrication of Polymeric and Biohybrid Fibers with Predesigned Size and Shape

Published on: January 8, 2014

Fiber optic sheet formation by selective photopolymerization.

T Kurokawa, N Takato, S Oikawa

    Applied Optics
    |March 4, 2010
    PubMed
    Summary

    Researchers developed novel fiber optic sheets using selective photopolymerization for image conversion. This method creates integrated light paths, achieving resolutions up to 5 lines/mm for facsimile systems.

    Area of Science:

    • Materials Science
    • Optoelectronics
    • Polymer Chemistry

    Background:

    • Traditional fiber optic components often involve complex assembly of individual fibers.
    • Image conversion in facsimile systems requires efficient light transmission and resolution.
    • Developing integrated optical components can simplify device fabrication and improve performance.

    Purpose of the Study:

    • To fabricate fiber optic sheets for image converter applications.
    • To investigate a novel method for creating integrated light paths via selective photopolymerization.
    • To evaluate the optical properties and resolution of the fabricated fiber optic sheets.

    Main Methods:

    • Doping a higher refractive index polymer film with a monomer.
    • Selective photopolymerization using UV light irradiation through a mask pattern.

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  • Simultaneous formation of all light paths within the polymer film.
  • Main Results:

    • Successfully fabricated fiber optic sheets with integrated light paths.
    • Achieved low optical attenuation of 0.15-0.20 dB/cm at lambda = 633 nm.
    • Demonstrated a resolution of up to approximately 5 lines/mm for image conversion.

    Conclusions:

    • Selective monomer photopolymerization is an effective method for fabricating fiber optic sheets.
    • The fabricated sheets are suitable for use as image converters in facsimile input systems.
    • This technique offers a simultaneous light path formation, simplifying fabrication compared to assembling individual fibers.