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美國布魯克海文儀器公司>資料下載>Chemical warfare simulant‐responsive polymer nanocomposites: Synthesis and evaluation

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Chemical warfare simulant‐responsive polymer nanocomposites: Synthesis and evaluation

閱讀:371          發(fā)布時(shí)間:2018-8-13
提 供 商 美國布魯克海文儀器公司 資料大小 753.7KB
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 作者: ShengChun Sha, Rong Zhu, Myles B. Herbert, Julia A. Kalow, Timothy M. Swager

 

摘要:Nanomaterials that undergo a physical change upon chemical warfare agent (CWA) exposure can potentially be used in detectors to warn soldiers of their presence or in fabrics to provide ondemand protection. In this study, hybrid nanoparticles (NPs) were prepared by grafting a CWAresponsive polymer from a silicon dioxide (SiO2) surface using ring opening metathesis polymerization; the covalent functionalization of the polymers on the NP surface was confirmed by gel permeation chromatography, dynamic light scattering, and transmission electron microscopy analysis. The polymergrafted SiO2 NPs were found to undergo a pronounced decrease (approximately 200 nm) in their hydrodynamic radius upon exposure to CWA simulants trifluoroacetic acid and diethyl chlorophosphate in toluene. This decrease in hydrodynamic radius is attributed to the electrophilemediated ionization of the triarylmethanol responsive unit and represents a rare example of polycation formation leading to polymer chain collapse. We have ascribed this ionizationinduced collapse to the formation of a favorable stacking interaction between the planar triarylcations. These studies have important implications for the development of breathable fabrics that can provide ondemand protection for soldiers in combat situations. 

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