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Correlated Multimodal Approach Reveals Key Details of Nerve-Agent Decomposition by Single-Site Zr-Based Polyoxometalates

  • Yiyao Tian
  • , Anna M. Plonka
  • , Amani M. Ebrahim
  • , Robert M. Palomino
  • , Sanjaya D. Senanayake
  • , Alex Balboa
  • , Wesley O. Gordon
  • , Diego Troya
  • , Djamaladdin G. Musaev
  • , John R. Morris
  • , Mark B. Mitchell
  • , Daniel L. Collins-Wildman
  • , Craig L. Hill
  • , Anatoly I. Frenkel
  • Stony Brook University
  • Brookhaven National Laboratory
  • Edgewood Chemical Biological Center
  • Virginia Polytechnic Institute and State University
  • Emory University
  • Kennesaw State University

Research output: Contribution to journalArticlepeer-review

28 Scopus citations

Abstract

Development of technologies for protection against chemical warfare agents (CWAs) is critically important. Recently, polyoxometalates have attracted attention as potential catalysts for nerve-agent decomposition. Improvement of their effectiveness in real operating conditions requires an atomic-level understanding of CWA decomposition at the gas-solid interface. We investigated decomposition of the nerve agent Sarin and its simulant, dimethyl chlorophosphate (DMCP), by zirconium polytungstate. Using a multimodal approach, we showed that upon DMCP and Sarin exposure the dimeric tungstate undergoes monomerization, making coordinatively unsaturated Zr(IV) centers available, which activate nucleophilic hydrolysis. Further, DMCP is shown to be a good model system of reduced toxicity for studies of CWA deactivation at the gas-solid interface.

Original languageEnglish
Pages (from-to)2295-2299
Number of pages5
JournalJournal of Physical Chemistry Letters
Volume10
Issue number9
DOIs
StatePublished - May 2 2019

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