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Sensing Chemical Warfare Agent Simulants via Photonic Crystals of the Morpho didius Butterfly

机译:通过 Morpho didius 蝴蝶的光子晶体感应化学战剂模拟物

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The rapid and portable detection of trace chemical warfare agents (CWAs) remains a challenge for the international security and monitoring community. This work reports the first use of natural photonic crystals (PhCs) as vapor sensors for CWA simulants. Dimethyl methylphosphonate, a nerve agent simulant, and dichloropentane, a mustard gas simulant, were successfully detected at the parts per million level by processing visible light reflected from the PhC inherent to the wing scales of the Morpho didius butterfly. Additionally, modeling of this natural system suggested several parameters for enhancing the sensitivity of a synthetic PhC toward CWA simulants, including materials selection, structure, and spacing of the PhC, and partial functionalization of the PhC toward the analyte of interest. Collectively, this study provides strategies for designing a sensitive, selective, rapid, and affordable means for CWA detection.
机译:快速便携式检测痕量化学战剂(CWA)仍然是国际安全和监测界的挑战。这项工作报告了首次将天然光子晶体(PhC)用作CWA模拟物的蒸汽传感器。通过处理由默菲·迪迪乌斯(Morpho didius)蝴蝶的翅膀鳞片固有的PhC反射的可见光,成功地在百万分之一的水平上成功检测了神经毒剂模拟物二甲基甲基膦酸酯和芥子气模拟物二氯戊烷。此外,对该自然系统的建模建议了几个参数,用于增强合成PhC对CWA模拟物的敏感性,包括材料的选择,PhC的结构和间距,以及PhC对目标分析物的部分功能化。总的来说,这项研究提供了设计CWA检测的灵敏,选择性,快速和负担得起的方法的策略。

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