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Hierarchically Porous Silk/Activated-Carbon Composite Fibres for Adsorption and Repellence of Volatile Organic Compounds

机译:多孔多孔丝/活性炭复合纤维对挥发性有机化合物的吸附和排斥

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摘要

Fabrics comprised of porous fibres could provide effective passive protection against chemical and biological (CB) threats whilst maintaining high air permeability (breathability). Here, we fabricate hierarchically porous fibres consisting of regenerated silk fibroin (RSF) and activated-carbon (AC) prepared through two fibre spinning techniques in combination with ice-templating—namely cryogenic solution blow spinning (Cryo-SBS) and cryogenic wet-spinning (Cryo-WS). The Cryo-WS RSF fibres had exceptionally small macropores (as low as 0.1 µm) and high specific surface areas (SSAs) of up to 79 m ·g . The incorporation of AC could further increase the SSA to 210 m ·g (25 wt.% loading) whilst also increasing adsorption capacity for volatile organic compounds (VOCs).
机译:由多孔纤维组成的织物可以提供有效的被动保护,以抵御化学和生物(CB)威胁,同时保持高透气性(透气性)。在这里,我们通过两种纤维纺丝技术与冰模板技术(即低温溶液吹纺(Cryo-SBS)和低温湿纺)结合,制造出由再生丝素蛋白(RSF)和活性炭(AC)组成的分层多孔纤维。 (Cryo-WS)。 Cryo-WS RSF纤维具有异常小的大孔(低至0.1 µm)和高达79 m·g的高比表面积(SSA)。掺入AC可将SSA进一步提高到210 m·g(25重量%负载),同时还增加了对挥发性有机化合物(VOC)的吸附能力。

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