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Towards a Sustainable Synthesis of Oxymethylene Dimethyl Ether by Homogeneous Catalysis and Uptake of Molecular Formaldehyde
Authors:Andreas Peter  Samuel M. Fehr  Valentin Dybbert  Dr. Daniel Himmel  Ines Lindner  Dr. Eberhard Jacob  Mohamed Ouda  Dr. Achim Schaadt  Dr. Robin J. White  Dr. Harald Scherer  Prof. Dr. Ingo Krossing
Affiliation:1. Department of Inorganic and Analytical Chemistry and Materials Research Center Freiburg, University of Freiburg, Freiburg, Germany;2. Motors Emissions Concepts UG, Krailling, Germany;3. Sustainable Catalytic Materials Group, Division Hydrogen Technologies, Fraunhofer Institute for Solar Energy Systems, Freiburg, Germany
Abstract:Oxymethylene dimethyl ethers (OMEn; CH3(‐OCH2‐)nO‐CH3, n=3–5) are a novel class of sustainable synthetic fuels, which are of increasing interest due to their soot‐free combustion. Herein a novel anhydrous OMEn synthesis route is presented. Catalyzed by trimethyloxonium salts, dimethoxymethane takes up monomeric gaseous formaldehyde instantaneously and forms high purity OMEn at temperatures of 25–30 °C. This new anhydrous approach using molecular formaldehyde and catalytic amounts of highly active trimethyloxonium salts represents a promising new step towards a sustainable formation of OMEn emanating from CO2 and H2.
Keywords:homogeneous catalysis  molecular formaldehyde  NMR spectroscopy  oxymethylene dimethyl ethers  weakly coordinating anions
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