4.8 Article

Strong, Ductile MOF-Poly(urethane urea) Composites

期刊

CHEMISTRY OF MATERIALS
卷 33, 期 9, 页码 3164-3171

出版社

AMER CHEMICAL SOC
DOI: 10.1021/acs.chemmater.0c04874

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资金

  1. Department of Army Research [W911NF-20-2-0143]
  2. Joint Science and Technology Office for Chemical and Biological Defense (JSTO-CBD) [CB3934]
  3. USD/R&E (the Under Secretary of Defense-Research and Engineering)
  4. National Defense Education Program (NDEP)/BA-1
  5. Basic Research in the Science Mathematics and Research for Transformation (SMART) Scholarship Program
  6. National Science Foundation [OISE 1844463, ECCS-1542148]
  7. Department of Defense (DoD) through the National Defense Science and Engineering Graduate (NDSEG) Fellowship Program
  8. Achievement Rewards for College Scientists (ARCS) Foundation Fellowship

向作者/读者索取更多资源

A new polymer was synthesized to produce composite materials that are both high strength and ductile when combined with MOF, suitable for personal protective equipment. Testing with a chemical warfare agent simulant showed excellent hydrolysis rate of the composite materials, while the electrospinning technique further expanded the processing techniques available for these materials.
Metal-organic framework (MOF)-polymer hybrid materials have been investigated for use in personal protective equipment (PPE) for combating chemical threats. However, few of these composite materials have demonstrated the desired processability or balance of strength and ductility suitable for modern textiles. In this work, a poly(urethane urea) (PUU) polymer was synthesized to mimic solution-processable spandex for MOF composites that have combined advantages for both the force the composite can withstand (strength) and the ability of the material to deform under strain (ductility). UiO-66/PUU mixed matrix membranes (MMMs) with up to 50 wt % UiO-66 MOF showed both high strength and ductility. UiO-66 and UiO-66-NH2 MMMs with PUU mechanically out-performed previously studied 50 wt % MOF/poly(vinylidene difluoride) (PVDF) MMMs. Testing of MMMs against the chemical warfare agent simulant dimethyl-4-nitrophenylphosphate (DMNP) revealed that the polymer plays an important role, with UiO-66-NH2/PUU MMM showing the fastest hydrolysis rate. Ductile fibers of 50 wt % UiO-66 and UiO-66-NH2 PUU composites were successfully prepared and showed remarkable handling properties and activity toward DMNP hydrolysis with 50 wt % UiO-66-NH2/PUU fibers performing better than any of the MMMs tested. These MOF-polymer composites could also be electrospun into nanofiber mats, which further illustrates the diverse range of processing techniques available for these materials.

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