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Updated: Feb 3, 2026

Surface Properties of Synthesized Nanoporous Carbon and Silica Matrices
Published on: March 27, 2019
Propylene Oxide Formation on a Silica Surface with Peroxo Defects: Implications in Astrochemistry
Marco Fioroni1, A Kelly Tartera1, Nathan J DeYonker1
1Department of Chemistry , The University of Memphis , 213 Smith Chemistry Building, Memphis , Tennessee 38152 , United States.
Abstract:
The formation of the chiral molecule propylene oxide (CH3CHCH2O) recently detected in the interstellar medium (ISM) is proposed to take place on an amorphous silicate grain surface where peroxo defects are present. A computational analysis conducted at the DFT and MP2-F12 levels of theory on a neat amorphous silica model supports such a hypothesis resulting in (a) strong thermodynamic driving forces and low activation energies allowing the synthesis of CH3CHCH2O at low temperatures, (b) chemical defects on silica surfaces promoting heterogeneous catalysis of the increasing molecular complexity found in interstellar and circumstellar medium, and (c) chemical defects that have implications on understanding how processing phases modify the nature of the reactive groups on a silica surface affecting the surface catalytic activity.
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