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Polyoxometalates : properties, structure, and synthesis /

Detalles Bibliográficos
Clasificación:Libro Electrónico
Otros Autores: Roberts, Aaron P. (Editor )
Formato: Electrónico eBook
Idioma:Inglés
Publicado: Hauppauge, New York : Nova Science Publishers, Inc., [2016]
Colección:Chemistry research and applications
Temas:
Acceso en línea:Texto completo
Tabla de Contenidos:
  • Preface; Vanadium-Containing Polyoxometalates: Synthesis, Structure and Properties; Abstract; 1. Introduction; 2. Synthesis and Formation; 3. DFT Calculations; 4. Electrochemistry; 5. Catalysis; 5.1. Catalytic Oxidation of Alkane and Alkene; 5.2. Oxidation of Alcohols; 5.3. Hydroxylation of Benzene to Phenol; 5.4. Desulfurization; 5.5. Biomass Conversion; 6. Bioactivity; Conclusion; References; Antibacterial and Antitumor Activities of Polyoxometalates; Abstract; 1. Introduction; 2. Antibacterial Activity; 2.1. Antibacterial Activity of POM
  • 2.2. Antibacterial Activity of Self-Assembled Composites3. Antitumor Activity; 3.1. Interactions between POM and Membrane; 3.2. Apoptosis and Autophagy Induced by Pom; 3.3. Antitumor Activity of POM--Based Compounds; 3.4. Antitumor Activity of Self-Assembled Composites; Conclusion; References; Biographical Sketch; Environmental Chemistry Utilization of the Redox and Catalytic Properties of Polyoxometalates for Desulfurization of Gas and Fuel Oil; Abstract; Introduction; The Influences of Several Important Factors on the Redox Property of POM
  • 1. The Influence of Structure on the Redox Property of POM2. The Influence of Heteroatom on the Redox Property of POM; 3. The Influence of Coordination Atom on the Redox Property of POM; 4. The Influence of Substituting Atom on the Redox Property of POM; 5. The Influence of Counter Ion on the Redox Property of POM; 6. The Influence of Reaction Medium on the Redox Property of POM; Direct Utilization of POM for Oxidative Removal of Gaseous Contaminant H2S; 1. The Researches on H2S Static Removal by HPC; 2. The Researches on H2S Dynamic Removal by HPC
  • Development of POM Based New ODS Catalysts for Clean Fuel Oils1. Heteropolyacids Catalysts; 2. Polyoxometalates Catalysts; 2.1. Heteropolyacids Quaternary Ammonium Salt Catalysts; 2.2. Heteropolyacids Ionic Liquid Catalysts; 3. Supported Heteropolyacids Catalysts; 4. MOFs Supported POMs Catalysts; Conclusion; Acknowledgment; References; Homogeneous Polyoxometalate Catalysis in Lignocellulosic Biomass Conversion; Abstract; Introduction; POM-Catalyzed Delignification; of Lignocellulosics; Background; POM-Catalyzed Anaerobic Delignification; POM-Catalyzed Aerobic Delignification
  • HPA Catalyzed Delignification by DioxygenHPA Catalyzed Delignification by Ozone; Other Applications of POM-Catalysis for Delignification; POM-Catalyzed Hydrolysis of Lignocellulosics; Conclusion; Acknowledgments; References; Utilization of Polyoxometalates for NOx Adsorptive Decomposition, Photocatalysis and Greenhouse Gas CO2 Conversion; Abstract; Introduction; 1. Properties of POMs; 1.1. Structure of Polyanion; 1.2. Crystallographic Property; 1.3. Redox Property of HPCs; 2. Applications of POMs in Removal of NOx; 2.1. NOx Adsorption; 2.1.1. NOx Adsorption Capacity of POMs