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Catalysis in Confined Frameworks Understanding the synthesis and applications of porous solid catalysts Heterogeneous catalysis is a catalytic process in which catalysts and reactants exist in different phases. Heterogeneous catalysis with solid catalysts proceeds through the absorption of substrates and reagents which are liquid or gas, and this is largely dependent on the accessible surface area of the solid which can generate active reaction sites. The synthesis of porous solids is an increasingly productive approach to generating solid catalysts with larger accessible surface…mehr
Understanding the synthesis and applications of porous solid catalysts
Heterogeneous catalysis is a catalytic process in which catalysts and reactants exist in different phases. Heterogeneous catalysis with solid catalysts proceeds through the absorption of substrates and reagents which are liquid or gas, and this is largely dependent on the accessible surface area of the solid which can generate active reaction sites. The synthesis of porous solids is an increasingly productive approach to generating solid catalysts with larger accessible surface area, allowing more efficient catalysis.
Catalysis in Confined Frameworks: Synthesis, Characterization, and Applications provides a comprehensive overview of synthesis and use of porous solids as heterogeneous catalysts. It provides detailed analysis of pore engineering, a thorough characterization of the advantages and disadvantages of porous solids as heterogeneous catalysts, and an extensive discussion of applications. The result is a foundational introduction to a cutting-edge field.
Catalysis in Confined Frameworks: Synthesis, Characterization, and Applications readers will also find:
An editorial team comprised of international experts with extensive experience
Detailed discussion of catalyst classes including zeolites, mesoporous aluminosilicates, and more
A special focus on size selective catalysis
Catalysis in Confined Frameworks: Synthesis, Characterization, and Applications is an essential reference for catalytic chemists, organic chemists, materials scientists, physical chemists, and any researchers or industry professionals working with heterogeneous catalysis.
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Autorenporträt
Hermenegildo García is full Professor at the Instituto de Tecnología Química of the Technical University of Valencia and Honorary Adjunct Professor at the Center of Excellence in Advanced Materials Research of King Abdullaziz University. Prof. Garcia has been active in the field of heterogeneous catalysis working with porous catalysts and NPs, as well as in the photocatalytic production of solar fuels. Prof. Garcia is doctor Honoris Causa from the University of Bucharest and the recipient of the 2011 Janssen-Cilag award given by the Spanish Royal Society of Chemistry and the 2015 Jaume I prize for Novel Technologies. Amarajothi Dhakshinamoorthy obtained his Ph.D., degree in 2009 from Madurai Kamaraj University, Tamil Nadu, India. Later, he worked as a postdoctoral researcher with Prof. Hermenegildo Garcia at the Technical University of Valencia for four years. Then, he returned to India and joined as UGC-Assistant Professor in June 2013 at School of Chemistry, Madurai Kamaraj University. His research interests include catalysis by metal-organic frameworks and graphene-related materials. He is the recipient of the Young Scientist Award 2014 for Chemical Sciences by The Academy of Sciences, India. He was also awarded an INSADFG international bilateral exchange award to visit Germany in 2015. He has co-authored over 150 publications, 5 book chapters and an international patent.
Inhaltsangabe
Synthesis of porous solids with different active sites for size selective catalysis Characterization of porous solids Heterogeneous catalysis in confined framework - Photocatalysis - Oxidation reactions - Lewis acid as active sites - Basic sites - Porous solids as host for metal nanoparticles/complexes Engineering of active sites in porous solids - Tuning the internal polarity to specific reactions - Incorporation of active guests Porous solids for environmental applications Size selective catalysis by Enzymes supported over porous solids
Synthesis of porous solids with different active sites for size selective catalysis Characterization of porous solids Heterogeneous catalysis in confined framework - Photocatalysis - Oxidation reactions - Lewis acid as active sites - Basic sites - Porous solids as host for metal nanoparticles/complexes Engineering of active sites in porous solids - Tuning the internal polarity to specific reactions - Incorporation of active guests Porous solids for environmental applications Size selective catalysis by Enzymes supported over porous solids
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