Title : Wireless Hazard Badges to Detect Nerve-Agent Simulants - Zhu_2016_Angew.Chem.Int.Ed.Engl_55_9662 |
Author(s) : Zhu R , Azzarelli JM , Swager TM |
Ref : Angew Chem Int Ed Engl , 55 :9662 , 2016 |
Abstract :
Human exposure to hazardous chemicals can have adverse short- and long-term health effects. In this Communication, we have developed a single-use wearable hazard badge that dosimetrically detects diethylchlorophosphate (DCP), a model organophosphorous cholinesterase inhibitor simulant. Improved chemically actuated resonant devices (CARDs) are fabricated in a single step and unambiguously relate changes in chemiresistance to a wireless readout. To provide selective and readily manufacturable sensor elements for this platform, we developed an ionic-liquid-mediated single walled carbon nanotube based chemidosimetric scheme with DCP limits of detection of 28 ppb. As a practical demonstration, an 8 h workday time weighted average equivalent exposure of 10 ppb DCP effects an irreversible change in smartphone readout. |
PubMedSearch : Zhu_2016_Angew.Chem.Int.Ed.Engl_55_9662 |
PubMedID: 27384415 |
Zhu R, Azzarelli JM, Swager TM (2016)
Wireless Hazard Badges to Detect Nerve-Agent Simulants
Angew Chem Int Ed Engl
55 :9662
Zhu R, Azzarelli JM, Swager TM (2016)
Angew Chem Int Ed Engl
55 :9662