Part of the Catalysis and Reaction Engineering Commons

Works by Christopher T. Williams in Catalysis and Reaction Engineering

2015

Unraveling the Mechanism of Propanoic Acid Hydrodeoxygenation using Deuterium Kinetic Isotope Effects, Yuliana K. Lugo-José, Sina Behtash, Marjorie Nicholson, John R. Monnier, Andreas Heyden, Christopher T. Williams
Faculty Publications

Effect of Palladium Surface Structure on the Hydrodeoxygenation of Propionic Acid: Identification of Active Sites, Sina Behtash, Jianmin Lu, Christopher T. Williams, John R. Monnier, Andreas Heyden
Faculty Publications

2014

Hydrodeoxygenation of Propanoic Acid Over Silica-Supported Palladium: Effect of Metal Particle Size, Yuliana K. Lugo-José, John R. Monnier, Andreas Heyden, Christopher T. Williams
Faculty Publications

Transformation of Mo and W Thiosalts Into Unsupported Sulfide Catalysts: A Temperature Dependent In-situ Spectroscopic Investigation, Yanjiao Yi, Christopher T. Williams, Mary Glascock, Guang Xiong, Jochen A. Lauterbach, Changhai Liang
Faculty Publications

2008

Hydrodechlorination of 1,2-Dichloroethane Catalyzed by Dendrimer-Derived Pt–Cu/SiO2 Catalysts, H. Xie, J. Y. Howe, V. Schwartz, John R. Monnier, Christopher T. Williams, Harry J. Ploehn
Faculty Publications