4.7 Article

Transparent Electromagnetic Shielding Film Utilizing Imprinting-Based Micro Patterning Technology

期刊

POLYMERS
卷 13, 期 5, 页码 -

出版社

MDPI
DOI: 10.3390/polym13050738

关键词

electromagnetic interference shielding; transparency; ultraviolet imprinting; soft molding; flexible structure

资金

  1. Ministry of Trade, Industry and Energy [10045475]
  2. National Research Foundation of Korea [4199991014542] Funding Source: Korea Institute of Science & Technology Information (KISTI), National Science & Technology Information Service (NTIS)

向作者/读者索取更多资源

Utilization of component integration methods in the smart mobile industry has accelerated, leading to the necessity of transparent and flexible EMI shielding technology. This study developed a transparent and flexible EMI shielding material with an intaglio pattern, using UV imprinting technology for mass production. The film exhibited satisfactory EMI shielding performance while maintaining structural stability and transparency, making it suitable for electric and electronic applications.
Utilization of methods involving component integration has accelerated, owing to the growth of the smart mobile industry. However, this integration leads to interference issues between the components, thereby elucidating the importance of the electromagnetic interference (EMI) shielding technology to solve such issues. EMI shielding technology has been previously implemented via the reflection or absorption of electromagnetic waves by using conductive materials. Nevertheless, to tackle the recent changes in the industry, a transparent and flexible EMI shielding technology is necessitated. In this study, a transparent and flexible EMI shielding material was fabricated by filling a conductive binder in a film comprising an intaglio pattern; this was achieved by using the ultraviolet (UV) imprinting technology to realize mass production. Subsequently, changes in the aperture ratio and shielding characteristics were analyzed according to the structure of the pattern. Based on this analysis, a square pattern was designed and a film with an intaglio pattern was developed through a UV imprinting process. Furthermore, it was confirmed that the transmittance, conductivity, and EMI shielding rate of the film were altered while changing the coating thickness of the conductive particles in the intaglio pattern. The final film prepared in this study exhibited characteristics that satisfied the required EMI shielding performance for electric and electronic applications, while achieving flexible structural stability and transparency.

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