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1.
Graphite and Graphene Oxide Based PGM -Free Model Catalysts for the Oxygen Reduction Reaction
by Dumont, Joseph H., Ph.D.  The University of New Mexico. 2017: 118 pages; 10606453.
2.
Coordination-Driven Self-Assembly of Cofacial Porphyrin Prisms as Oxygen Reduction Catalysts
by Oldacre, Amanda Nicole, Ph.D.  State University of New York at Buffalo. 2018: 180 pages; 10822651.
6.
Design and Synthesis of Mn(III) dipyrromethene Metal Complexes as Peroxynitrite Reduction Catalysts
by Kamadulski, Andrew, M.S.  Southern Illinois University at Edwardsville. 2016: 127 pages; 10249951.
7.
DFT study of the improved performance of oxygen reduction reaction on gold-copper alloy in a PEM fuel cell
by Kalavacherla, Raja S., M.S.  California State University, Long Beach. 2017: 45 pages; 10252073.
8.
Toward a Molecular Level Understanding of Mixed Metal Oxide Oxidation Catalysts
by Getsoian, Andrew G., Ph.D.  University of California, Berkeley. 2013: 150 pages; 3640440.
10.
Non-noble metal oxygen electrocatalysts for zinc-air batteries
by Yi, Zhan, Ph.D.  National University of Singapore (Singapore). 2015: 152 pages; 10006121.
12.
Understanding and Controlling Light Alkane Reactivity on Metal Oxides: Optimization Through Doping
by Derk, Alan Richard, Ph.D.  University of California, Santa Barbara. 2015: 181 pages; 3724768.
14.
Synthesis and activation of nanoscale dendrimer-derived supported noble metal catalysts
by Nazar Poor, Zahra, Ph.D.  University of South Carolina. 2011: 170 pages; 3469162.
15.
Cu, Zn-Based Catalysts for Methanol Synthesis
by Schumann, Julia, Dr.Nat.  Technische Universitaet Berlin (Germany). 2015: 179 pages; 10697496.
16.
Structure-Function Relationship of Strong Metal-Support Interaction Studied on Supported Pd Reference Catalysts
by Kast, Patrick, Dr.Nat.  Technische Universitaet Berlin (Germany). 2015: 144 pages; 10698587.
17.
Structure Function Relationships of Cobalt and Manganese Oxides As Catalysts for (Photo) Electrochemical Water Splitting
by Hillebrand, Philipp, Eng.D.  Technische Universitaet Berlin (Germany). 2015: 153 pages; 10703066.
18.
Size-Effect of Metallic Nanoparticles in Environmental Heterogeneous Catalysis
by Ma, Hanyu, Ph.D.  University of Notre Dame. 2017: 128 pages; 13836274.
19.
Nickel-based anodic electrocatalysts for fuel cells and water splitting
by Chen, Dayi, Ph.D.  The University of Utah. 2016: 156 pages; 10157943.
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22.
Catalytic conversion of syngas to higher alcohols over Cu-Fe based catalysts
by Lu, Yongwu, Ph.D.  Mississippi State University. 2014: 181 pages; 3665489.
24.
Sustainable Transformation of Biorenewables Mediated by Rationally Designed Nanoparticle Catalysts
by Al-Zubaidi, Hazim A., Ph.D.  Western Michigan University. 2018: 209 pages; 13877020.
25.
Developing Pathways for the Electrified Production of Fuels and Chemicals
by Luc, Wesley, Ph.D.  University of Delaware. 2019: 200 pages; 13884358.
26.
An Exploration of Geometric and Electronic Effects in Metal Nanoparticle Catalysts
by Childers, David, Ph.D.  University of Illinois at Chicago. 2014: 181 pages; 3668934.
28.
Nanodiamond-Supported Composite Materials for Catalysis
by Quast, Arthur Daniel, Ph.D.  The University of Utah. 2017: 118 pages; 10621258.
29.
Development of Mesoporous Nanocatalysts for Production of Hydrogen and Fisher Tropsch Studies
by Abrokwah, Richard Yeboah, Ph.D.  North Carolina Agricultural and Technical State University. 2016: 221 pages; 10117803.
30.
Solid state chemistry of platinum group and noble metal oxides: Implications for heterogeneous catalysis
by Kurzman, Joshua A., Ph.D.  University of California, Santa Barbara. 2011: 263 pages; 3495690.
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