Pressure-induced amorphization and existence of molecular and polymeric amorphous forms in dense SO<sub>2</sub>.

Zhang, Huichao; Tóth, Ondrej; Liu, Xiao-Di; Bini, Roberto; Gregoryanz, Eugene; Dalladay-Simpson, Philip; De Panfilis, Simone; Santoro, Mario et al. · Proc Natl Acad Sci U S A · 2020

basic_science · Level V

Where this comes from

Abstract

We report here the pressure-induced amorphization and reversible structural transformation between two amorphous forms of SO<sub>2</sub>: molecular amorphous and polymeric amorphous, with the transition found at 26 GPa over a broad temperature regime, 77 K to 300 K. The transformation was observed by both Raman spectroscopy and X-ray diffraction in a diamond anvil cell. The results were corroborated by ab initio molecular dynamics simulations, where both forward and reverse transitions were detected, opening a window to detailed analysis of the respective local structures. The high-pressure polymeric amorphous form was found to consist mainly of disordered polymeric chains made of three-coordinated sulfur atoms connected via oxygen atoms, with few residual intact molecules. This study provides an example of polyamorphism in a system consisting of simple molecules with multiple bonds.