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Autonomously Responsive Membranes for Chemical Warfare Protection

机译:用于化学战保护的自主响应膜

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摘要

Stimuli-responsive materials offer new opportunities to resolve long-standing material challenges and are rapidly gaining pivotal roles in diverse applications. For example, smart protective garments that rapidly transport water vapor and autonomously block chemical threats are expected to enable an effective new paradigm of adaptive personal protection. However, the incorporation of these seemingly incompatible properties into a single responsive system remains elusive. Herein, a bistable membrane that can rapidly, selectively, and reversibly transition from a highly breathable state in a safe environment to a chemically protective state when exposed to organophosphate threats such as sarin is demonstrated. Dynamic response to chemical stimuli is achieved through the physical collapse of an ultrathin copolymer layer on the membrane surface, which efficiently gates transport through membrane pores composed of single-walled carbon nanotubes (SWNTs). The adoption of nanometer-wide SWNTs for ultrafast moisture conduction enables a simultaneous boost in size-sieving selectivity and water-vapor permeability by decreasing nanotube diameter, thereby overcoming the breathability/protection trade-off that limits conventional membrane materials. Adaptive multifunctional membranes based on this platform greatly extend the active use of a protective garment and present exciting opportunities in many other areas including separation processes, sensing, and smart delivery.
机译:刺激响应材料为解决长期材料挑战提供了新的机会,并在不同应用中迅速获得关键角色。例如,快速运输水蒸气和自主阻挡化学威胁的智能防护服,将有效地实现了适应性个人保护的有效范式。然而,将这些看似不相容的特性纳入一个响应系统仍然难以捉摸。在本文中,证明了一种双稳态膜,其在安全环境中从高透气状态快速,选择性地和可逆地转变为在暴露于诸如Sarin的有机磷威胁的化学保护状态。通过膜表面上的超薄共聚物层的物理塌陷来实现对化学刺激的动态响应,其有效地通过由单壁碳纳米管(SWNT)组成的膜孔的转运。用于超快水分传导的纳米宽SWNT通过降低纳米管直径来同时提高尺寸筛选的选择性和水蒸气渗透性,从而克服透气/保护折衷,限制常规膜材料。基于该平台的自适应多功能膜极大地延长了保护衣服的主动用途,并在许多其他地区目前令人兴奋的机会,包括分离过程,传感和智能交付。

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