Department of Chemical and Biomolecular Engineering, College of Engineering, Yonsei University, Seoul 03722, Republic of Korea.
Chem-Bio Technology Center, Agency for Defense Development, Daejeon, 34186, Republic of Korea.
J Hazard Mater. 2022 Apr 5;427:127884. doi: 10.1016/j.jhazmat.2021.127884. Epub 2021 Nov 25.
Chemical warfare agents (CWAs) are toxic materials that cause death by contact with the skin or by respiration. Although studies on detoxification of CWAs have been intensively conducted, studies that block CWAs permeation are rare. In this study, for blocking CWAs, a multilayer thin film composed of linear polyethylenimine (LPEI) and graphene oxide (GO) is simply prepared through a spray-assisted Layer-by-Layer (LbL) assembly process. LPEI could change its morphology dependent on pH, which is known as a representative hydrogen donor and acceptor. By controlling the shape of the polymer chain, a heterogenous film could have a loose or dense inner structure. CWAs mainly move through diffusion and have hydrogen bonding sites. Therefore, the heterogeneous film can limit CWAs movement based on controlling pathways and hydrogen bonds within the film. The protective effect of this membrane is investigated using dimethyl methylphosphonate (DMMP), a nerve gas simulant. DMMP vapor transmittance rate (DVTR) and N permeance of LPEI/GO are 67.91 g/m day and 34,293.04 GPU. It means that the protection efficiency is 72.65%. Although this membrane has a thin thickness (100 nm), it shows a high protective effect with good breathability. And water/DMMP selectivity of the membrane is 66.63. Since this multilayer membrane shows efficient protection performance with a simple preparation method, it has a high potential for applications such as protective suits and masks.
化学战剂(CWA)是通过与皮肤接触或呼吸导致死亡的有毒物质。尽管已经对 CWA 的解毒进行了深入研究,但很少有研究阻止 CWA 渗透。在这项研究中,为了阻止 CWA,通过喷雾辅助层层(LbL)组装工艺简单制备了由线性聚乙烯亚胺(LPEI)和氧化石墨烯(GO)组成的多层薄膜。LPEI 可以根据 pH 值改变其形态,这是一种代表性的氢供体和受体。通过控制聚合物链的形状,可以使异质膜具有疏松或致密的内部结构。CWA 主要通过扩散移动,并且具有氢键位点。因此,基于控制膜内的途径和氢键,异质膜可以限制 CWA 的运动。使用神经毒气模拟物二甲甲基膦酸酯(DMMP)研究了这种膜的保护作用。LPEI/GO 的 DMMP 蒸气透过率(DVTR)和 N 渗透率分别为 67.91 g/m 天和 34,293.04 GPU。这意味着保护效率为 72.65%。尽管这种膜的厚度很薄(100nm),但它具有良好的透气性和很高的保护效果。并且膜的水/DMMP 选择性为 66.63。由于这种多层膜具有高效的保护性能和简单的制备方法,因此在防护服和口罩等应用中具有很高的潜力。