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One of the major research avenues of our group is the study of the preparation of solid catalysts. A typical example is the platinum or rhodium containing automobile catalytic converter used to eliminate carbon monoxide, nitric oxide, and hydrocarbons from auto exhaust. Solid catalysts are usually composed of a metal or metal oxide deposited onto or supported on a high surface area, refractory oxide, which produces small, well anchored metal particles with a maximum amount of exposed metal surface.
Our current efforts involve the use and comparison of different methods for synthesis of a variety of catalysts especially using Strong Electrostatic Adsorption ( SEA ) in producing catalysts with high dispersion. The studies are also done to rigorously and systematically verify an underlying theory we have revived from the colloid science literature to predict how much metal will be adsorbed by the oxide for a full range of liquid conditions. We also investigate coupled methods for catalyst synthesis especially in the cases of bimetallic and bifunctional catalysts.
In a second vein of work, we look at a further step of catalyst preparation. After impregnation and drying, the catalyst is put through a series of heat and chemical treatments to activate the metal. We study how the shape and chemical structure of the deposited metal particles change as a function of pretreatment conditions. In some cases the size and shape of particles can be controlled. For these studies we use various types of characterization techniques such as electron microscopy and x-ray diffraction.
Our current efforts involve the use and comparison of different methods for synthesis of a variety of catalysts especially using Strong Electrostatic Adsorption ( SEA ) in producing catalysts with high dispersion. The studies are also done to rigorously and systematically verify an underlying theory we have revived from the colloid science literature to predict how much metal will be adsorbed by the oxide for a full range of liquid conditions. We also investigate coupled methods for catalyst synthesis especially in the cases of bimetallic and bifunctional catalysts.
In a second vein of work, we look at a further step of catalyst preparation. After impregnation and drying, the catalyst is put through a series of heat and chemical treatments to activate the metal. We study how the shape and chemical structure of the deposited metal particles change as a function of pretreatment conditions. In some cases the size and shape of particles can be controlled. For these studies we use various types of characterization techniques such as electron microscopy and x-ray diffraction.
研究兴趣
论文共 203 篇作者统计合作学者相似作者
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Catalysis letters (2024)
John R. Regalbuto, Edward Chandler, Chigozie Ezeorah, Alaba Ojo, Nathan Thornburg, Mikayla Romero,Hien Pham,Abhaya Datye,Tae-Yeol Jeon,Frank Gupton, Christopher T. Williams
Catalysis today (2024): 114556-114556
OSTI OAI (US Department of Energy Office of Scientific and Technical Information) (2023)
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CATALYSIS SCIENCE & TECHNOLOGYno. 10 (2023): 3020-3034
ECS Meeting Abstractsno. 39 (2022): 1439-1439
Michael B. Burkholder,Fahim Bin Abdur Rahman, Edward H. Chandler,J. R. Regalbuto,B. F. Gupton,J. Meynard M. Tengco
CARBON TRENDS (2022)
Horie Adabi,Abolfazl Shakouri,Andrea Zitolo,Tristan Asset, Anastassiya Khan,Jasmine Bohannon, Raphael Chattot,Christopher Williams,Frederic Jaouen,John R. Regalbuto,William E. Mustain
Social Science Research Network (2022)
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作者统计
#Papers: 204
#Citation: 5510
H-Index: 40
G-Index: 70
Sociability: 6
Diversity: 3
Activity: 41
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