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Flexible SIS/HKUST-1 Mixed Matrix Composites as Protective Barriers against Chemical Warfare Agent Simulants

机译:柔性SIS / HKUST-1混合基质复合材料作为针对化学战争的保护屏障模拟剂

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We fabricated and demonstrated, for the first time, metal-organic framework (MOF), polymer mixed-matrix composites (MMCs) as effective, low burden barriers against chemical warfare agent (CWA) simulants. We incorporated the MOF HKUST-1 into elastomeric triblock copolymers of polystyrene-block-polyisoprene-block-polystyrene (SIS) for use as semipermeable barrier against the CWA simulant 2-chloroethyl ethyl sulfide (CEES). MMCs containing up to 50 wt % HKUST-1 were cast and evaluated for CEES permeation, moisture vapor transport rate (MVTR), and mechanical properties, such as elastic modulus and percent elongation. Increasing the MOF content resulted in longer protection against CEES with breakthrough times ranging from immediate breakthrough for the baseline SIS to over 4000 min for the best-performing MMC. MVTRs of high-MOF-content MMCs were approximately 5-10 times higher than either SIS or typical laboratory gloves made from nitrile and latex. The elastic moduli increased with increased MOF content corresponding to a reduction in percent elongation. The triblock copolymer also was found to protect the MOF crystal structure after exposure to CEES and liquid water, which may lead to longer usage time and shelf life. The ability to resist degradation due to moisture shows the potential utility of these composites when exposed to rain, sweat, or other moisture-rich environments. Finally, the MOF-containing composites functioned as robust colorimetric indicators of CEES exposure. Thus, these MMC materials present a potential route toward next-generation personal protective equipment with a combination of detoxification, sensing, environmental stability, and thermal/user-comfort properties not present in current materials solutions.
机译:我们首次制造和证明了金属有机骨架(MOF),聚合物混合基质复合材料(MMC),作为化学战层(CWA)模拟剂的有效,低负荷屏障。我们将MOF HKUST-1掺入弹性体三嵌段共聚物的聚苯乙烯 - 嵌段 - 聚异戊二烯 - 聚苯乙烯(SIS)中,用作针对CWA模拟剂2-氯乙基乙基硫醚(CEES)的半透屏障。施用含有高达50wt%HKUST-1的MMC,并评估CEES渗透,水分蒸气运输速率(MVTR)和机械性能,例如弹性模量和伸长率百分比。增加MOF含量导致对具有突破时间的突破时间较长,从基线SIS的直接突破到超过4000分钟,以获得最佳的MMC。高MOF含量MMC的MVTR比由腈和乳胶制成的SIS或典型的实验室手套高约5-10倍。弹性模量随对应于伸长率百分比的降低的增加的MOF含量增加。发现三嵌段共聚物在暴露于CEA和液态水后保护MOF晶体结构,这可能导致使用时间更长的时间和保质期。抵抗由于水分引起的降解的能力显示出在暴露于雨雨,汗水或其他富含水分的环境时这些复合材料的潜在效用。最后,含MOF的复合材料作为CEES曝光的坚固比色指示器。因此,这些MMC材料具有潜在的途径,其具有不存在于当前材料解决方案中的解毒,感测,环境稳定性和热/用户舒适性和热/用户舒适性能的组合。

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