Oxidation of olefins using atmospheric oxygen atoms initiated by tert-butylhydroperoxide or hydrogen peroxide with silver nanoparticles deposited on MCM-41 as catalysts
Author:
Affiliation:
1. Department of Chemistry
2. Michigan Technological University
3. Houghton
4. USA
Abstract
Silver nanoparticles on MCM-41 oxidize olefins using atmospheric oxygen initiated by peroxides with 3% NaCl in H2O/tBuOH as solvent.
Publisher
Royal Society of Chemistry (RSC)
Subject
Pollution,Environmental Chemistry
Link
http://pubs.rsc.org/en/content/articlepdf/2016/GC/C5GC03110A
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1. Synthesis and Catalytic Epoxidation Activity with TBHP and H2O2 of Dioxo-, Oxoperoxo-, and Oxodiperoxo Molybdenum(VI) and Tungsten(VI) Compounds Containing Monodentate or Bidentate Phosphine Oxide Ligands: Crystal Structures of WCl2(O)2(OPMePh2)2, WCl2(O)(O2)(OPMePh2)2, MoCl2(O)2dppmO2·C4H10O, WCl2(O)2dppmO2, Mo(O)(O2)2dppmO2, and W(O)(O2)2dppmO2
2. Cyclooctene epoxidation with H2O2 and single crystal X-ray determined crystal structures of new molybdenum and tungsten catalysts bearing the hydrophilic ligand hydroxymethyldiphenylphosphine oxide
3. Oxidation of Alcohols with Hydrogen Peroxide Catalyzed by Molybdenum(VI)–Peroxo Complex under Solvent-free Conditions
4. Highly efficient olefin oxidation catalysts based on regular nano-particles of titanium-containing mesoporous molecular sieves
5. A Two‐Dimensional, Hydrogen‐Bond‐Cross‐Linked Molybdenum(VI) Network Polymer with Catalytic Activity
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