Quantum Calculations of VX Ammonolysis and Hydrolysis Pathways via Hydrated Lithium Nitride

Abstract

Recently, lithium nitride (Li3N) has been proposed as a chemical warfare agent (CWA) neutralization reagent for its ability to produce nucleophilic ammonia molecules and hydroxide ions in aqueous solution. Quantum chemical calculations can provide insight into the Li3N neutralization process that has been studied experimentally. Here, we calculate reaction-free energies associated with the Li3N-based neutralization of the CWA VX using quantum chemical density functional theory and ab initio methods. We find that alkaline hydrolysis is more favorable to either ammonolysis or neutral hydrolysis for initial P-S and P-O bond cleavages. Reaction-free energies of subsequent reactions are calculated to determine the full reaction pathway. Notably, products predicted from favorable reactions have been identified in previous experiments.

Document Details

Document Type
Pub Defense Publication
Publication Date
Aug 11, 2021
Source ID
10.3390/ijms22168653

Entities

People

  • Calen J. Leverant
  • Chad W. Priest
  • Jeffery A Greathouse
  • Mark K. Kinnan
  • Susan B. Rempe

Organizations

  • Defense Threat Reduction Agency

Tags

Readers

  • Analytical Chemistry
  • Molecular Photonics/Laser Physics
  • Organic Chemistry

Technology Areas

  • Quantum Computing