A Thermally Stable, Infrared-Transparent High-Sulfur-Containing Polymer for High Aspect-Ratio Nanostructured MWIR Polarizer

  • Kang, Minjeong
  • Jang, Wontae
  • Lee, Junghyun
  • Kim, Sanghyun
  • Lee, Gyuwon
  • ... Wie, Jeong Jae
  • 외 7명
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초록

Infrared (IR) polarizer is essential for thermal imaging applications such as mobility and military operations. High-sulfur-containing polymers have emerged as promising candidates for IR polarizers due to their mid-wave IR (MWIR) transparency, addressing the limitations of inorganic materials, including their brittleness and high cost. However, poor thermal stability and limited IR range restrict their applicability. This study introduces a glassy IR polarizer based on poly(sulfur-co-hexavinyl disiloxane) (pSHVDS), a highly crosslinked sulfur-rich polymer synthesized via sulfur chemical vapor deposition (sCVD). Self-crosslinking of pSHVDS at high temperatures provided thermal stability during nanoimprint lithography, enabling the fabrication of high-fidelity nano-grating patterns (400 nm pitch, 150 nm width, 300 nm height). The broad transmittance and high aspect ratio of the nanopattern enabled the glassy-pSHVDS MWIR polarizer to achieve over 50% transmittance of transverse magnetic field (TTM) and an extinction ratio (ER) exceeding 6000 across a broad IR range (3-8 mu m). An additional pSHVDS anti-reflection coating further enhanced TTM to 84% and ER to 7200 at a wavelength of 4 mu m, the highest ER reported for organic MWIR polarizers to date. The polarizer maintained its performance after 24 h at 100 degrees C, demonstrating exceptional thermal stability. These findings underscore the potential of glassy pSHVDS-based polarizers for IR applications.

키워드

bilayer wire grid polarizerhigh sulfur-content polymer (HSCP)MWIR polarizersulfur chemical vapor deposition (sCVD)thermal stabilityELEMENTAL SULFURGRID POLARIZER
제목
A Thermally Stable, Infrared-Transparent High-Sulfur-Containing Polymer for High Aspect-Ratio Nanostructured MWIR Polarizer
저자
Kang, MinjeongJang, WontaeLee, JunghyunKim, SanghyunLee, GyuwonChoi, KeonwooKim, Jun OhKu, ZahyunAhn, JunhyoungLim, HyungjunLim, JeewooWie, Jeong JaeIm, Sung Gap
DOI
10.1002/smll.202504090
발행일
2025-07
유형
Article; Early Access
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Small
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