Advanced materials and systems for energy conversion [[electronic resource] ] : fundamentals and applications / / Yong X. Gan, editor
| Advanced materials and systems for energy conversion [[electronic resource] ] : fundamentals and applications / / Yong X. Gan, editor |
| Pubbl/distr/stampa | New York, : Nova Science Publishers, c2010 |
| Descrizione fisica | 1 online resource (217 p.) |
| Disciplina | 621.042 |
| Altri autori (Persone) | GanYong X |
| Collana | Energy science, engineering and technology series |
| Soggetto topico |
Renewable energy sources - Materials
Energy conversion |
| Soggetto genere / forma | Electronic books. |
| ISBN | 1-61209-809-6 |
| Formato | Materiale a stampa |
| Livello bibliografico | Monografia |
| Lingua di pubblicazione | eng |
| Nota di contenuto |
""ADVANCED MATERIALS AND SYSTEMSFOR ENERGY CONVERSION:FUNDAMENTALS AND APPLICATIONS""; ""ADVANCED MATERIALS AND SYSTEMS FOR ENERGY CONVERSION: FUNDAMENTALS AND APPLICATIONS""; ""Contents""; ""Preface""; ""About the Author""; ""Acknowledgment""; ""Energy Conversion Fundamentals""; ""1.1. Thermoelectrics""; ""1.1.1. Seebeck Effect""; ""1.1.2. Thermoelectric Power""; ""1.1.3. Peltier Effect""; ""1.1.4. Thomson Effect""; ""1.1.5. The Thomson Relationships""; ""1.1.6. Advantages of Thermoelectric Energy Conversion""; ""1.1.7. Energy Conversion Efficiency""; ""1.2. Photovoltaic Energy Conversion""
""1.3. Mechanoelectric Energy Conversion""""1.4. Electrochemical Energy Conversion""; ""1.4.1. Historical Background""; ""1.4.2. Fuel Cell Structure""; ""1.4.3. Fuel Cell Classification""; ""1.4.4. Materials for Solid Oxide Fuel Cells""; ""References""; ""Nanomaterials Processing andManufacturing""; ""2.1. Introduction""; ""2.2. Nanomaterials and Processes""; ""2.2.1. Bottom-up and Top-down Approaches""; ""2.2.2. Dendrimers and Processes""; ""2.2.3. Nanomaterials clusters and Arrays in Zeolites""; ""2.2.4. Synthesis of Nanomaterials through Arrested Precipitation"" ""2.2.5. Self-assembled Nanoscale Materials and Structures""""2.3. Nanoscale Device and System Concept""; ""2.4. Nanomaterials Processing and Manufacturing Techniques""; ""2.4.1. Chemical Approaches""; ""Solution Method: Liquid Phase Deposition""; ""Chemical Vapor Deposition""; ""Vapor-Liquid-Solid Growth""; ""2.4.2. Laser-Assisted Catalytic Growth""; ""2.4.3. Electrochemical Approaches""; ""Electrochemical Oxidization""; ""Electrochemical Etching""; ""Electroplating""; ""Electrocodeposition""; ""2.4.4. Template Approach""; ""AAO Template""; ""Other Templates""; ""2.4.5. Lithography"" ""Conventional Photolithography""""Soft Lithography and Nanoimprinting""; ""Near Field/Edge Lithographic Patterning Techniques""; ""Electron Beam Lithography""; ""Scanning Probe Lithography""; ""2.4.6. Electrospinning""; ""2.5. Applications""; ""2.5.1. Fuel Cell Electrodes""; ""2.5.2. Advanced Catalysts and Nanoreactors""; ""2.6. Concluding Remarks""; ""References""; ""Electroplating ThermoelectricEnergy Conversion Nanomaterials""; ""3.1. Introduction""; ""3.2. Materials and Experimental Methods""; ""3.3. Results and Discussion"" ""3.3.1. Electrochemical Dealloying of Copper from the Cu-Zn Alloy""""3.3.2. Electrodeposition of BiTe Alloy""; ""3.3.3. Thermoelectric Property Characterization""; ""3.4. Concluding Remarks""; ""References""; ""Thermal Photovoltaic EnergyConversion Nanomaterialswith Fractals""; ""4.1. Introduction""; ""4.2. Background""; ""4.3. Materials and Manufacturing Processes""; ""4.3.1. Synthesis of Nanostructured Fractals""; ""Preparation of Fractal Templates""; ""Thin Film Deposition and Fractal Pattern Transfer""; ""Sol-gel Deposition of Oxide TE-PV Nanomaterials"" ""Nanocomposite Fabrication and Packaging"" |
| Record Nr. | UNINA-9910465245503321 |
| New York, : Nova Science Publishers, c2010 | ||
| Lo trovi qui: Univ. Federico II | ||
| ||
Advanced materials and systems for energy conversion [[electronic resource] ] : fundamentals and applications / / Yong X. Gan, editor
| Advanced materials and systems for energy conversion [[electronic resource] ] : fundamentals and applications / / Yong X. Gan, editor |
| Pubbl/distr/stampa | New York, : Nova Science Publishers, c2010 |
| Descrizione fisica | 1 online resource (217 p.) |
| Disciplina | 621.042 |
| Altri autori (Persone) | GanYong X |
| Collana | Energy science, engineering and technology series |
| Soggetto topico |
Renewable energy sources - Materials
Energy conversion |
| ISBN | 1-61209-809-6 |
| Formato | Materiale a stampa |
| Livello bibliografico | Monografia |
| Lingua di pubblicazione | eng |
| Nota di contenuto |
""ADVANCED MATERIALS AND SYSTEMSFOR ENERGY CONVERSION:FUNDAMENTALS AND APPLICATIONS""; ""ADVANCED MATERIALS AND SYSTEMS FOR ENERGY CONVERSION: FUNDAMENTALS AND APPLICATIONS""; ""Contents""; ""Preface""; ""About the Author""; ""Acknowledgment""; ""Energy Conversion Fundamentals""; ""1.1. Thermoelectrics""; ""1.1.1. Seebeck Effect""; ""1.1.2. Thermoelectric Power""; ""1.1.3. Peltier Effect""; ""1.1.4. Thomson Effect""; ""1.1.5. The Thomson Relationships""; ""1.1.6. Advantages of Thermoelectric Energy Conversion""; ""1.1.7. Energy Conversion Efficiency""; ""1.2. Photovoltaic Energy Conversion""
""1.3. Mechanoelectric Energy Conversion""""1.4. Electrochemical Energy Conversion""; ""1.4.1. Historical Background""; ""1.4.2. Fuel Cell Structure""; ""1.4.3. Fuel Cell Classification""; ""1.4.4. Materials for Solid Oxide Fuel Cells""; ""References""; ""Nanomaterials Processing andManufacturing""; ""2.1. Introduction""; ""2.2. Nanomaterials and Processes""; ""2.2.1. Bottom-up and Top-down Approaches""; ""2.2.2. Dendrimers and Processes""; ""2.2.3. Nanomaterials clusters and Arrays in Zeolites""; ""2.2.4. Synthesis of Nanomaterials through Arrested Precipitation"" ""2.2.5. Self-assembled Nanoscale Materials and Structures""""2.3. Nanoscale Device and System Concept""; ""2.4. Nanomaterials Processing and Manufacturing Techniques""; ""2.4.1. Chemical Approaches""; ""Solution Method: Liquid Phase Deposition""; ""Chemical Vapor Deposition""; ""Vapor-Liquid-Solid Growth""; ""2.4.2. Laser-Assisted Catalytic Growth""; ""2.4.3. Electrochemical Approaches""; ""Electrochemical Oxidization""; ""Electrochemical Etching""; ""Electroplating""; ""Electrocodeposition""; ""2.4.4. Template Approach""; ""AAO Template""; ""Other Templates""; ""2.4.5. Lithography"" ""Conventional Photolithography""""Soft Lithography and Nanoimprinting""; ""Near Field/Edge Lithographic Patterning Techniques""; ""Electron Beam Lithography""; ""Scanning Probe Lithography""; ""2.4.6. Electrospinning""; ""2.5. Applications""; ""2.5.1. Fuel Cell Electrodes""; ""2.5.2. Advanced Catalysts and Nanoreactors""; ""2.6. Concluding Remarks""; ""References""; ""Electroplating ThermoelectricEnergy Conversion Nanomaterials""; ""3.1. Introduction""; ""3.2. Materials and Experimental Methods""; ""3.3. Results and Discussion"" ""3.3.1. Electrochemical Dealloying of Copper from the Cu-Zn Alloy""""3.3.2. Electrodeposition of BiTe Alloy""; ""3.3.3. Thermoelectric Property Characterization""; ""3.4. Concluding Remarks""; ""References""; ""Thermal Photovoltaic EnergyConversion Nanomaterialswith Fractals""; ""4.1. Introduction""; ""4.2. Background""; ""4.3. Materials and Manufacturing Processes""; ""4.3.1. Synthesis of Nanostructured Fractals""; ""Preparation of Fractal Templates""; ""Thin Film Deposition and Fractal Pattern Transfer""; ""Sol-gel Deposition of Oxide TE-PV Nanomaterials"" ""Nanocomposite Fabrication and Packaging"" |
| Record Nr. | UNINA-9910791824403321 |
| New York, : Nova Science Publishers, c2010 | ||
| Lo trovi qui: Univ. Federico II | ||
| ||
Advanced materials and systems for energy conversion : fundamentals and applications / / Yong X. Gan, editor
| Advanced materials and systems for energy conversion : fundamentals and applications / / Yong X. Gan, editor |
| Edizione | [1st ed.] |
| Pubbl/distr/stampa | New York, : Nova Science Publishers, c2010 |
| Descrizione fisica | 1 online resource (217 p.) |
| Disciplina | 621.042 |
| Altri autori (Persone) | GanYong X |
| Collana | Energy science, engineering and technology series |
| Soggetto topico |
Renewable energy sources - Materials
Energy conversion |
| ISBN | 1-61209-809-6 |
| Formato | Materiale a stampa |
| Livello bibliografico | Monografia |
| Lingua di pubblicazione | eng |
| Nota di contenuto |
""ADVANCED MATERIALS AND SYSTEMSFOR ENERGY CONVERSION:FUNDAMENTALS AND APPLICATIONS""; ""ADVANCED MATERIALS AND SYSTEMS FOR ENERGY CONVERSION: FUNDAMENTALS AND APPLICATIONS""; ""Contents""; ""Preface""; ""About the Author""; ""Acknowledgment""; ""Energy Conversion Fundamentals""; ""1.1. Thermoelectrics""; ""1.1.1. Seebeck Effect""; ""1.1.2. Thermoelectric Power""; ""1.1.3. Peltier Effect""; ""1.1.4. Thomson Effect""; ""1.1.5. The Thomson Relationships""; ""1.1.6. Advantages of Thermoelectric Energy Conversion""; ""1.1.7. Energy Conversion Efficiency""; ""1.2. Photovoltaic Energy Conversion""
""1.3. Mechanoelectric Energy Conversion""""1.4. Electrochemical Energy Conversion""; ""1.4.1. Historical Background""; ""1.4.2. Fuel Cell Structure""; ""1.4.3. Fuel Cell Classification""; ""1.4.4. Materials for Solid Oxide Fuel Cells""; ""References""; ""Nanomaterials Processing andManufacturing""; ""2.1. Introduction""; ""2.2. Nanomaterials and Processes""; ""2.2.1. Bottom-up and Top-down Approaches""; ""2.2.2. Dendrimers and Processes""; ""2.2.3. Nanomaterials clusters and Arrays in Zeolites""; ""2.2.4. Synthesis of Nanomaterials through Arrested Precipitation"" ""2.2.5. Self-assembled Nanoscale Materials and Structures""""2.3. Nanoscale Device and System Concept""; ""2.4. Nanomaterials Processing and Manufacturing Techniques""; ""2.4.1. Chemical Approaches""; ""Solution Method: Liquid Phase Deposition""; ""Chemical Vapor Deposition""; ""Vapor-Liquid-Solid Growth""; ""2.4.2. Laser-Assisted Catalytic Growth""; ""2.4.3. Electrochemical Approaches""; ""Electrochemical Oxidization""; ""Electrochemical Etching""; ""Electroplating""; ""Electrocodeposition""; ""2.4.4. Template Approach""; ""AAO Template""; ""Other Templates""; ""2.4.5. Lithography"" ""Conventional Photolithography""""Soft Lithography and Nanoimprinting""; ""Near Field/Edge Lithographic Patterning Techniques""; ""Electron Beam Lithography""; ""Scanning Probe Lithography""; ""2.4.6. Electrospinning""; ""2.5. Applications""; ""2.5.1. Fuel Cell Electrodes""; ""2.5.2. Advanced Catalysts and Nanoreactors""; ""2.6. Concluding Remarks""; ""References""; ""Electroplating ThermoelectricEnergy Conversion Nanomaterials""; ""3.1. Introduction""; ""3.2. Materials and Experimental Methods""; ""3.3. Results and Discussion"" ""3.3.1. Electrochemical Dealloying of Copper from the Cu-Zn Alloy""""3.3.2. Electrodeposition of BiTe Alloy""; ""3.3.3. Thermoelectric Property Characterization""; ""3.4. Concluding Remarks""; ""References""; ""Thermal Photovoltaic EnergyConversion Nanomaterialswith Fractals""; ""4.1. Introduction""; ""4.2. Background""; ""4.3. Materials and Manufacturing Processes""; ""4.3.1. Synthesis of Nanostructured Fractals""; ""Preparation of Fractal Templates""; ""Thin Film Deposition and Fractal Pattern Transfer""; ""Sol-gel Deposition of Oxide TE-PV Nanomaterials"" ""Nanocomposite Fabrication and Packaging"" |
| Record Nr. | UNINA-9911102092203321 |
| New York, : Nova Science Publishers, c2010 | ||
| Lo trovi qui: Univ. Federico II | ||
| ||
Advanced materials and systems for energy conversion : fundamentals and applications / / Yong X. Gan, editor
| Advanced materials and systems for energy conversion : fundamentals and applications / / Yong X. Gan, editor |
| Edizione | [1st ed.] |
| Pubbl/distr/stampa | New York, : Nova Science Publishers, c2010 |
| Descrizione fisica | 1 online resource (217 p.) |
| Disciplina | 621.042 |
| Altri autori (Persone) | GanYong X |
| Collana | Energy science, engineering and technology series |
| Soggetto topico |
Renewable energy sources - Materials
Energy conversion |
| ISBN | 1-61209-809-6 |
| Formato | Materiale a stampa |
| Livello bibliografico | Monografia |
| Lingua di pubblicazione | eng |
| Nota di contenuto |
""ADVANCED MATERIALS AND SYSTEMSFOR ENERGY CONVERSION:FUNDAMENTALS AND APPLICATIONS""; ""ADVANCED MATERIALS AND SYSTEMS FOR ENERGY CONVERSION: FUNDAMENTALS AND APPLICATIONS""; ""Contents""; ""Preface""; ""About the Author""; ""Acknowledgment""; ""Energy Conversion Fundamentals""; ""1.1. Thermoelectrics""; ""1.1.1. Seebeck Effect""; ""1.1.2. Thermoelectric Power""; ""1.1.3. Peltier Effect""; ""1.1.4. Thomson Effect""; ""1.1.5. The Thomson Relationships""; ""1.1.6. Advantages of Thermoelectric Energy Conversion""; ""1.1.7. Energy Conversion Efficiency""; ""1.2. Photovoltaic Energy Conversion""
""1.3. Mechanoelectric Energy Conversion""""1.4. Electrochemical Energy Conversion""; ""1.4.1. Historical Background""; ""1.4.2. Fuel Cell Structure""; ""1.4.3. Fuel Cell Classification""; ""1.4.4. Materials for Solid Oxide Fuel Cells""; ""References""; ""Nanomaterials Processing andManufacturing""; ""2.1. Introduction""; ""2.2. Nanomaterials and Processes""; ""2.2.1. Bottom-up and Top-down Approaches""; ""2.2.2. Dendrimers and Processes""; ""2.2.3. Nanomaterials clusters and Arrays in Zeolites""; ""2.2.4. Synthesis of Nanomaterials through Arrested Precipitation"" ""2.2.5. Self-assembled Nanoscale Materials and Structures""""2.3. Nanoscale Device and System Concept""; ""2.4. Nanomaterials Processing and Manufacturing Techniques""; ""2.4.1. Chemical Approaches""; ""Solution Method: Liquid Phase Deposition""; ""Chemical Vapor Deposition""; ""Vapor-Liquid-Solid Growth""; ""2.4.2. Laser-Assisted Catalytic Growth""; ""2.4.3. Electrochemical Approaches""; ""Electrochemical Oxidization""; ""Electrochemical Etching""; ""Electroplating""; ""Electrocodeposition""; ""2.4.4. Template Approach""; ""AAO Template""; ""Other Templates""; ""2.4.5. Lithography"" ""Conventional Photolithography""""Soft Lithography and Nanoimprinting""; ""Near Field/Edge Lithographic Patterning Techniques""; ""Electron Beam Lithography""; ""Scanning Probe Lithography""; ""2.4.6. Electrospinning""; ""2.5. Applications""; ""2.5.1. Fuel Cell Electrodes""; ""2.5.2. Advanced Catalysts and Nanoreactors""; ""2.6. Concluding Remarks""; ""References""; ""Electroplating ThermoelectricEnergy Conversion Nanomaterials""; ""3.1. Introduction""; ""3.2. Materials and Experimental Methods""; ""3.3. Results and Discussion"" ""3.3.1. Electrochemical Dealloying of Copper from the Cu-Zn Alloy""""3.3.2. Electrodeposition of BiTe Alloy""; ""3.3.3. Thermoelectric Property Characterization""; ""3.4. Concluding Remarks""; ""References""; ""Thermal Photovoltaic EnergyConversion Nanomaterialswith Fractals""; ""4.1. Introduction""; ""4.2. Background""; ""4.3. Materials and Manufacturing Processes""; ""4.3.1. Synthesis of Nanostructured Fractals""; ""Preparation of Fractal Templates""; ""Thin Film Deposition and Fractal Pattern Transfer""; ""Sol-gel Deposition of Oxide TE-PV Nanomaterials"" ""Nanocomposite Fabrication and Packaging"" |
| Record Nr. | UNINA-9911136049503321 |
| New York, : Nova Science Publishers, c2010 | ||
| Lo trovi qui: Univ. Federico II | ||
| ||
Advances in materials science for environmental and energy technologies V / / edited by Tatsuki Ohji [and five others]
| Advances in materials science for environmental and energy technologies V / / edited by Tatsuki Ohji [and five others] |
| Pubbl/distr/stampa | Hoboken, New Jersey : , : John Wiley & Sons, Incorporated, , [2016] |
| Descrizione fisica | 1 online resource (257 pages) : illustrations |
| Disciplina | 628.028/4 |
| Collana | Ceramic transactions |
| Soggetto topico |
Environmental engineering - Materials
Renewable energy sources - Materials Radioactive waste disposal - Materials Green products - Materials |
| Soggetto genere / forma | Electronic books. |
| ISBN |
1-119-32460-2
1-119-32362-2 1-119-32458-0 |
| Formato | Materiale a stampa |
| Livello bibliografico | Monografia |
| Lingua di pubblicazione | eng |
| Record Nr. | UNINA-9910136648603321 |
| Hoboken, New Jersey : , : John Wiley & Sons, Incorporated, , [2016] | ||
| Lo trovi qui: Univ. Federico II | ||
| ||
Advances in materials science for environmental and energy technologies V / / edited by Tatsuki Ohji [and five others]
| Advances in materials science for environmental and energy technologies V / / edited by Tatsuki Ohji [and five others] |
| Pubbl/distr/stampa | Hoboken, New Jersey : , : John Wiley & Sons, Incorporated, , [2016] |
| Descrizione fisica | 1 online resource (257 pages) : illustrations |
| Disciplina | 628.028/4 |
| Collana | Ceramic transactions |
| Soggetto topico |
Environmental engineering - Materials
Renewable energy sources - Materials Radioactive waste disposal - Materials Green products - Materials |
| ISBN |
1-119-32460-2
1-119-32362-2 1-119-32458-0 |
| Formato | Materiale a stampa |
| Livello bibliografico | Monografia |
| Lingua di pubblicazione | eng |
| Record Nr. | UNINA-9910830890203321 |
| Hoboken, New Jersey : , : John Wiley & Sons, Incorporated, , [2016] | ||
| Lo trovi qui: Univ. Federico II | ||
| ||
Materials challenges in alternative and renewable energy : a collection of papers presented at the Materials Challenges in Alternative and Renewable Energy Conference February 21-24, 2010, Cocoa Beach, Florida / / edited by George Wicks ... [et al.]
| Materials challenges in alternative and renewable energy : a collection of papers presented at the Materials Challenges in Alternative and Renewable Energy Conference February 21-24, 2010, Cocoa Beach, Florida / / edited by George Wicks ... [et al.] |
| Autore | Wicks George |
| Edizione | [1] |
| Pubbl/distr/stampa | Wiley, 2012 |
| Descrizione fisica | 1 online resource (430 p.) |
| Disciplina | 621.042 |
| Altri autori (Persone) | WicksGeorge G |
| Collana | Ceramic transactions |
| Soggetto topico |
Renewable energy sources - Materials
Renewable natural resources |
| ISBN |
9786613813886
9781282251496 128225149X 9781118019450 1118019458 9781118019467 1118019466 9781118019443 111801944X |
| Formato | Materiale a stampa |
| Livello bibliografico | Monografia |
| Lingua di pubblicazione | eng |
| Nota di contenuto |
Materials Challenges in Alternative and Renewable Energy; Contents; Preface; Acknowledgments; HYDROGEN; Hydrogen Storage Technologies-A Tutorial with Perspectives from the US National Program; Structural Study and Hydrogen Sorption Kinetics of Ball-Milled Mg-10 wt% Ni Alloy Catalysed by Nb; Mechanical Processing-Experimental Tool or New Chemistry?; Production of Hydrogen and Carbon Monoxide from Water and Carbon Dioxide through Metal Oxide Thermochemical Cycles; Ultrasmall Angle X-Ray Scattering (USAXS) Studies of Morphological Changes in NaAIH4
Carbon Building Materials from Coal Char: Durable Materials for Solid Carbon Sequestration to Enable Hydrogen Production by Coal PyrolysisThermal Decomposition of t-Butylamine Borane Studied by In Situ Solid State NMR; The Performances of Ceramic Based Membranes for Fuel Cells; Microcrack Resistant Polymers Enabling Lightweight Composite Hydrogen Storage Vessels; A Study of the Thermodynamic Destabilization of Sodium Aluminum Hydride (NaAIH4) with Titanium Nitride (TiN) using X-ray Diffraction and Residual Gas Analysis; BATTERIES AND ENERGY STORAGE MATERIALS Rapid Synthesis of Electrode Materials (Li4Ti5O12 and LiFePO4) for Lithium Ion Batteries through Microwave Enhanced Processing TechniquesLithium Storage Characteristics in Nano-Graphene Platelets; In-Situ Impedance Spectroscopy of LiMn5Ni0.4CrO.1O4 Cathode Material; Cu2(ZnxSn2-x)(SySe1-y)4 Monograin Materials for Photovoltaics; Determination of the Diffusion Coefficient of Lithium Ions in Graphite Coated with Polymer-Derived SiCN Ceramic; Nano-Aggregate Synthesis by Gas Condensation in a Magnetron Source for Efficient Energy Conversion Devices Modeling Nanoparticle Synthesis by Gas Condensation in a Nanocluster Source for Applications in Photovoltaic and Hydrogen Fuel CellsCarbon Encapsulated-Iron Lithium Fluoride Nanocomposite as High Cyclic Stability Cathode Material in Lithium Batteries; The Ortho-Phosphate Arrojadite as a New Material for Cathodes in Li-Ion Batteries; SOLAR; A Novel Purification Method for Production of Solar Grade Silicon; Metallurgical Refining of Silicon for Solar Applications by Slagging of Impurity Elements; Ocean Thermal Energy Conversion: Heat Exchanger Evaluation and Selection Synthesis of Solar-Grade Silicon from Rice Husk Ash-An Integrated ProcessSuitability of Pyrolytic Boron Nitride, Hot Pressed Boron Nitride, and Pyrolytic Graphite for CIGS Processes; Materials Selection and Processing for Lunar Based Space Solar Power; Cu2ZnSnSe4 Thin Films Produced by Selenization of Cu-Zn-Sn Composition Precursor Films; HYDROPOWER; Martensitic Stainless Steel OCr13Ni4Mo for Hydraulic Runner; Advanced Composite Materials for Tidal Turbine Blades; NUCLEAR; Immobilization of Tc in a Metallic Waste Form; Development of Iodine Waste Forms using Low-Temperature Sintering Glass WIND |
| Record Nr. | UNINA-9911019933603321 |
Wicks George
|
||
| Wiley, 2012 | ||
| Lo trovi qui: Univ. Federico II | ||
| ||
Materials challenges in alternative and renewable energy [[electronic resource] ] : a collection of papers presented at the Materials Challenges in Alternative and Renewable Energy Conference February 21-24, 2010, Cocoa Beach, Florida / / edited by George Wicks ... [et al.]
| Materials challenges in alternative and renewable energy [[electronic resource] ] : a collection of papers presented at the Materials Challenges in Alternative and Renewable Energy Conference February 21-24, 2010, Cocoa Beach, Florida / / edited by George Wicks ... [et al.] |
| Pubbl/distr/stampa | Hoboken, NJ, : Wiley |
| Descrizione fisica | 1 online resource (430 p.) |
| Disciplina | 621.042 |
| Altri autori (Persone) | WicksGeorge G |
| Collana | Ceramic transactions |
| Soggetto topico |
Renewable energy sources - Materials
Renewable natural resources |
| Soggetto genere / forma | Electronic books. |
| ISBN |
1-282-25149-X
9786613813886 1-118-01945-8 1-118-01946-6 1-118-01944-X |
| Formato | Materiale a stampa |
| Livello bibliografico | Monografia |
| Lingua di pubblicazione | eng |
| Nota di contenuto |
Materials Challenges in Alternative and Renewable Energy; Contents; Preface; Acknowledgments; HYDROGEN; Hydrogen Storage Technologies-A Tutorial with Perspectives from the US National Program; Structural Study and Hydrogen Sorption Kinetics of Ball-Milled Mg-10 wt% Ni Alloy Catalysed by Nb; Mechanical Processing-Experimental Tool or New Chemistry?; Production of Hydrogen and Carbon Monoxide from Water and Carbon Dioxide through Metal Oxide Thermochemical Cycles; Ultrasmall Angle X-Ray Scattering (USAXS) Studies of Morphological Changes in NaAIH4
Carbon Building Materials from Coal Char: Durable Materials for Solid Carbon Sequestration to Enable Hydrogen Production by Coal PyrolysisThermal Decomposition of t-Butylamine Borane Studied by In Situ Solid State NMR; The Performances of Ceramic Based Membranes for Fuel Cells; Microcrack Resistant Polymers Enabling Lightweight Composite Hydrogen Storage Vessels; A Study of the Thermodynamic Destabilization of Sodium Aluminum Hydride (NaAIH4) with Titanium Nitride (TiN) using X-ray Diffraction and Residual Gas Analysis; BATTERIES AND ENERGY STORAGE MATERIALS Rapid Synthesis of Electrode Materials (Li4Ti5O12 and LiFePO4) for Lithium Ion Batteries through Microwave Enhanced Processing TechniquesLithium Storage Characteristics in Nano-Graphene Platelets; In-Situ Impedance Spectroscopy of LiMn5Ni0.4CrO.1O4 Cathode Material; Cu2(ZnxSn2-x)(SySe1-y)4 Monograin Materials for Photovoltaics; Determination of the Diffusion Coefficient of Lithium Ions in Graphite Coated with Polymer-Derived SiCN Ceramic; Nano-Aggregate Synthesis by Gas Condensation in a Magnetron Source for Efficient Energy Conversion Devices Modeling Nanoparticle Synthesis by Gas Condensation in a Nanocluster Source for Applications in Photovoltaic and Hydrogen Fuel CellsCarbon Encapsulated-Iron Lithium Fluoride Nanocomposite as High Cyclic Stability Cathode Material in Lithium Batteries; The Ortho-Phosphate Arrojadite as a New Material for Cathodes in Li-Ion Batteries; SOLAR; A Novel Purification Method for Production of Solar Grade Silicon; Metallurgical Refining of Silicon for Solar Applications by Slagging of Impurity Elements; Ocean Thermal Energy Conversion: Heat Exchanger Evaluation and Selection Synthesis of Solar-Grade Silicon from Rice Husk Ash-An Integrated ProcessSuitability of Pyrolytic Boron Nitride, Hot Pressed Boron Nitride, and Pyrolytic Graphite for CIGS Processes; Materials Selection and Processing for Lunar Based Space Solar Power; Cu2ZnSnSe4 Thin Films Produced by Selenization of Cu-Zn-Sn Composition Precursor Films; HYDROPOWER; Martensitic Stainless Steel OCr13Ni4Mo for Hydraulic Runner; Advanced Composite Materials for Tidal Turbine Blades; NUCLEAR; Immobilization of Tc in a Metallic Waste Form; Development of Iodine Waste Forms using Low-Temperature Sintering Glass WIND |
| Record Nr. | UNINA-9910139216703321 |
| Hoboken, NJ, : Wiley | ||
| Lo trovi qui: Univ. Federico II | ||
| ||
Materials challenges in alternative and renewable energy [[electronic resource] ] : a collection of papers presented at the Materials Challenges in Alternative and Renewable Energy Conference February 21-24, 2010, Cocoa Beach, Florida / / edited by George Wicks ... [et al.]
| Materials challenges in alternative and renewable energy [[electronic resource] ] : a collection of papers presented at the Materials Challenges in Alternative and Renewable Energy Conference February 21-24, 2010, Cocoa Beach, Florida / / edited by George Wicks ... [et al.] |
| Pubbl/distr/stampa | Hoboken, NJ, : Wiley |
| Descrizione fisica | 1 online resource (430 p.) |
| Disciplina | 621.042 |
| Altri autori (Persone) | WicksGeorge G |
| Collana | Ceramic transactions |
| Soggetto topico |
Renewable energy sources - Materials
Renewable natural resources |
| ISBN |
1-282-25149-X
9786613813886 1-118-01945-8 1-118-01946-6 1-118-01944-X |
| Formato | Materiale a stampa |
| Livello bibliografico | Monografia |
| Lingua di pubblicazione | eng |
| Nota di contenuto |
Materials Challenges in Alternative and Renewable Energy; Contents; Preface; Acknowledgments; HYDROGEN; Hydrogen Storage Technologies-A Tutorial with Perspectives from the US National Program; Structural Study and Hydrogen Sorption Kinetics of Ball-Milled Mg-10 wt% Ni Alloy Catalysed by Nb; Mechanical Processing-Experimental Tool or New Chemistry?; Production of Hydrogen and Carbon Monoxide from Water and Carbon Dioxide through Metal Oxide Thermochemical Cycles; Ultrasmall Angle X-Ray Scattering (USAXS) Studies of Morphological Changes in NaAIH4
Carbon Building Materials from Coal Char: Durable Materials for Solid Carbon Sequestration to Enable Hydrogen Production by Coal PyrolysisThermal Decomposition of t-Butylamine Borane Studied by In Situ Solid State NMR; The Performances of Ceramic Based Membranes for Fuel Cells; Microcrack Resistant Polymers Enabling Lightweight Composite Hydrogen Storage Vessels; A Study of the Thermodynamic Destabilization of Sodium Aluminum Hydride (NaAIH4) with Titanium Nitride (TiN) using X-ray Diffraction and Residual Gas Analysis; BATTERIES AND ENERGY STORAGE MATERIALS Rapid Synthesis of Electrode Materials (Li4Ti5O12 and LiFePO4) for Lithium Ion Batteries through Microwave Enhanced Processing TechniquesLithium Storage Characteristics in Nano-Graphene Platelets; In-Situ Impedance Spectroscopy of LiMn5Ni0.4CrO.1O4 Cathode Material; Cu2(ZnxSn2-x)(SySe1-y)4 Monograin Materials for Photovoltaics; Determination of the Diffusion Coefficient of Lithium Ions in Graphite Coated with Polymer-Derived SiCN Ceramic; Nano-Aggregate Synthesis by Gas Condensation in a Magnetron Source for Efficient Energy Conversion Devices Modeling Nanoparticle Synthesis by Gas Condensation in a Nanocluster Source for Applications in Photovoltaic and Hydrogen Fuel CellsCarbon Encapsulated-Iron Lithium Fluoride Nanocomposite as High Cyclic Stability Cathode Material in Lithium Batteries; The Ortho-Phosphate Arrojadite as a New Material for Cathodes in Li-Ion Batteries; SOLAR; A Novel Purification Method for Production of Solar Grade Silicon; Metallurgical Refining of Silicon for Solar Applications by Slagging of Impurity Elements; Ocean Thermal Energy Conversion: Heat Exchanger Evaluation and Selection Synthesis of Solar-Grade Silicon from Rice Husk Ash-An Integrated ProcessSuitability of Pyrolytic Boron Nitride, Hot Pressed Boron Nitride, and Pyrolytic Graphite for CIGS Processes; Materials Selection and Processing for Lunar Based Space Solar Power; Cu2ZnSnSe4 Thin Films Produced by Selenization of Cu-Zn-Sn Composition Precursor Films; HYDROPOWER; Martensitic Stainless Steel OCr13Ni4Mo for Hydraulic Runner; Advanced Composite Materials for Tidal Turbine Blades; NUCLEAR; Immobilization of Tc in a Metallic Waste Form; Development of Iodine Waste Forms using Low-Temperature Sintering Glass WIND |
| Record Nr. | UNINA-9910830770603321 |
| Hoboken, NJ, : Wiley | ||
| Lo trovi qui: Univ. Federico II | ||
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Materials challenges in alternative and renewable energy II [[electronic resource] ] : a collection of papers presented at the Materials Challenges in Alternative and Renewable Energy Conference, February 26-March 1, 2012, Clearwater, Florida / / edited by George Wicks ... [et al.]
| Materials challenges in alternative and renewable energy II [[electronic resource] ] : a collection of papers presented at the Materials Challenges in Alternative and Renewable Energy Conference, February 26-March 1, 2012, Clearwater, Florida / / edited by George Wicks ... [et al.] |
| Pubbl/distr/stampa | Hoboken, N.J., : Wiley, 2013 |
| Descrizione fisica | 1 online resource (354 p.) |
| Disciplina | 621.042 |
| Altri autori (Persone) | WicksGeorge |
| Collana | Ceramic transactions |
| Soggetto topico | Renewable energy sources - Materials |
| ISBN |
1-118-58516-X
1-299-18697-1 1-118-58513-5 |
| Formato | Materiale a stampa |
| Livello bibliografico | Monografia |
| Lingua di pubblicazione | eng |
| Nota di contenuto |
Cover; Title Page; Copyright Page; Contents; Preface; Acknowledgements; NUCLEAR; State of Nuclear Energy in the World; BATTERIES AND ENERGY STORAGE; Correlation Between Microstructure and Oxygen Removal in Solid-Oxide-Fuel-Cell-Model Electrodes Pt(O2)/YSZ and Pd(O2)/YSZ; Electrical and Morphological Characterization of Monocultures and Co-Cultures of Shewanella Putrefaciens and Shewanella Oneidensis in a Microbial Fuel Cell; BIOMASS; Refractory Ceramic Lining Selection and Troubleshooting in Thermal Biomass Operations
Comparison of Two Stage Mesophilic and Thermophilic Anaerobic Digestion of OFMSWBiogasification of Marine Algae Nannochloropsis Oculata; A Preliminary Study of an Innovative Biomass Waste Aerobic Degradation System for Hot Water Heating; Multi-Energy Optimization Process: Biodiesel Production through Ultrasound and Microwaves; Effects of Fuel Grade Ethanol on Pump Station and Terminal Facilities; Distributed Hydrogen Generation and Storage from Biomass; ELECTRIC GRID; Gallium Nitride for Grid Applications; GEOTHERMAL High-Temperature Circuit Boards for Use in Geothermal Well Monitoring ApplicationsSelf-Degradable Cementitious Sealing Materials in Enhanced Geothermal System; HYDROGEN; Thermodynamics and Kinetics of Complex Borohydride and Amide Hydrogen Storage Materials; Microstructure and Corrosion Behavior of the Cu-Pd-M Ternary Alloys for Hydrogen Separation Membranes; Metal-Hydrogen Systems: What Changes when Systems go to the Nano-Scale?; MATERIALS AVAILABILITY FOR ALTERNATIVE ENERGY; Preparation of Organic-Modified Ceria Nanocrystals with Hydrothermal Treatment Integration of MgO Carbonation Process to Capture CO2 from a Coal-Fired Power PlantInvestigation on Ammonium Phosphate Mixed SiO2/Polymer Hybrid Composite Membranes; NANOCOMPOSITES AND NANOMATERIALS; Nano-Heterogeneous Structuring Effects on Thermal Power Factor and Thermal Conductivity; Development of Thermoelectric Devices for Structural Composites; Effect of Sn Concentration on Physical Properties of ZnO Thin Films Grown by Spray Pyrolysis on Sn02:F/Glass; Effect of Heat Treatment on the Physical Properties of ln2S3 Prepared by Chemical Bath Deposition Effect of Indium Concentration on the Physical Properties of ln2O3 Nanomaterials Grown by Spray PyrolysisOne-Pot Synthesis of Functionalized Few-Walled Carbon Nanotube/MnO2 Composite for High Performance Electrochemical Supercapacitors; SOLAR; The Use of Inexpensive, All-Natural Organic Materials in Dye-Sensitized Solar Cells; Deep Level Defects in N+-CdS/P-CdTe Solar Cells; Growth Dynamics in Thin Films of Copper Indium Gallium Diselenide Sputtered from a Quaternary Target; WIND; Novel Flexible Membrane for Structural Health Monitoring of Wind Turbine Blades-Feasibility Study Robotic and Multiaxial Testing for the Determination of the Constitutive Characterization of Composites |
| Record Nr. | UNINA-9910141475903321 |
| Hoboken, N.J., : Wiley, 2013 | ||
| Lo trovi qui: Univ. Federico II | ||
| ||