A Microphase Separation Strategy for the Infrared Transparency-Thermomechanical Property Conundrum in Sulfur-Rich Copolymers

  • Hwang, Jae Hyuk
  • Kim, Sang Hwa
  • Cho, Woongbi
  • Lee, Woohwa
  • Park, Sungmin
  • ... Wie, Jeong Jae
  • 외 4명
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초록

With intrinsic optical and dynamic properties of polysulfide chains, inverse vulcanized copolymers have demonstrated immense potential for infrared (IR) optical applications. However, preparing highly IR-transparent sulfur-rich copolymers without sacrificing their thermomechanical properties remains challenging. To overcome the trade-off relationship between IR optical and thermomechanical properties, an in situ microphase separation strategy for the inverse vulcanization of elemental sulfur utilizing self-crosslinkable 1,3,5-trivinylbenzene (TVB) is presented. Even with 80 wt% sulfur content, the microphase-separated TVB-rich domain self-reinforces the copolymer with a noteworthy modulus of approximate to 2.0 GPa and a high glass transition temperature (T-g) of 92.6 degrees C, while still exhibiting outstanding IR optical properties. This work is expected to provide insights into the fundamental structure-property relationships of sulfur-rich copolymers and pave the way for various practical applications.

키워드

infrared imagingmicrophase separationsulfur-rich copolymersthermomechanical propertyDYNAMIC COVALENT POLYMERSREFRACTIVE-INDEX POLYMERSINVERSE VULCANIZATIONELEMENTAL SULFUR
제목
A Microphase Separation Strategy for the Infrared Transparency-Thermomechanical Property Conundrum in Sulfur-Rich Copolymers
저자
Hwang, Jae HyukKim, Sang HwaCho, WoongbiLee, WoohwaPark, SungminKim, Yong SeokLee, Jong-ChanLee, Kyung JinWie, Jeong JaeKim, Dong-Gyun
DOI
10.1002/adom.202202432
발행일
2023-03
유형
Article; Early Access
저널명
Advanced Optical Materials
11
5
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