4.7 Article

Chalcogenide Hybrid Inorganic/Organic Polymers: Ultrahigh Refractive Index Polymers for Infrared Imaging

Journal

ACS MACRO LETTERS
Volume 6, Issue 5, Pages 500-504

Publisher

AMER CHEMICAL SOC
DOI: 10.1021/acsmacrolett.7b00225

Keywords

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Funding

  1. NSF [DMR-1607971]
  2. Kuraray
  3. NRF [2010-0018290]
  4. NIST award through the Center for Neutron Science at the University of Delaware [70NANB15H260]
  5. University of Delaware's through the Department of Materials Science and Engineering
  6. AFOSR Phases I & II SBIR Contract [FA9550-15-C-0046, FA955017-C4005]
  7. Direct For Mathematical & Physical Scien
  8. Division Of Materials Research [1607971] Funding Source: National Science Foundation

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We report on the preparation of ultrahigh refractive index polymers via the inverse vulcanization of elemental sulfur, selenium, and 1,3-diisopropenylbenzene for use as novel transmissive materials for mid-infrared (IR) imaging applications. Poly(sulfur-random-selenium-random(1,3-diisopropenylbenzene)) (poly(S-r-Se-r-DIB) terpolymer materials from this process exhibit the highest refractive index of any synthetic polymer (n > 2.0) and excellent IR transparency, which can be directly tuned by terpolymer composition. Sulfur or selenium containing (co)polymers prepared via inverse vulcanization can be described as Chalcogenide Hybrid Inorganic/Organic Polymers (CHIPs) and are polymeric analogues to wholly inorganic Chalcogenide Glasses (ChGs), which are commonly used as transmissive materials in mid-IR imaging. Finally, we demonstrate that CHIPs composed of (poly(S-r-Se-r-D1B) can be melt processed into windows that enabled high quality mid-IR thermal imaging of human subjects and highly resolved imaging of human vasculature.

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