
eBook - PDF
Novel Catalyst Materials for Bioelectrochemical Systems: Fundamentals and Applications
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- English
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eBook - PDF
Novel Catalyst Materials for Bioelectrochemical Systems: Fundamentals and Applications
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Print ISBN
9780841236677
Table of contents
- Novel Catalyst Materials for Bioelectrochemical Systems: Fundamentals and Applications
- ACS Symposium Series1342
- Foreword
- Preface
- Recent Development in Cathodic Catalyst towards Performance of Bioelectrochemical Systems
- H2 Evolution Catalysts for Microbial Electrolysis Cells
- Novel Nanoengineered Materials-Based Catalysts for Various Bioelectrochemical Systems
- Oxygen Reduction Reaction Electrocatalysts for Microbial Fuel Cells
- Bacterially Generated Nanocatalysts and Their Applications
- Current Trends in Development of Photosynthetic Bioelectrochemical Systems for Light Energy Conversion
- Significance of Nanostructures of an Electrode Surface in Direct Electron Transfer-Type Bioelectrocatalysis of Redox Enzymes
- Modified Stainless Steel as Anode Materials in Bioelectrochemical Systems
- Studies on Controlled Protein Folding versus Direct Electron-Transfer Reaction of Cytochrome C on MWCNT/Nafion Modified Electrode Surface and Its Selective Bioelectrocatalytic H2O2 Reduction and Sensing Function
- Novel Bioelectrocatalytic Strategies Based on Immobilized Redox Metalloenzymes on Tailored Electrodes
- Recent Advances on Metal Organic Framework–Derived Catalysts for Electrochemical Oxygen Reduction Reaction
- Editors’ Biographies
- Indexes
- Author Index
- Subject Index
- Preface
- Recent Development in Cathodic Catalyst towards Performance of Bioelectrochemical Systems
- H2 Evolution Catalysts for Microbial Electrolysis Cells
- Novel Nanoengineered Materials-Based Catalysts for Various Bioelectrochemical Systems
- Oxygen Reduction Reaction Electrocatalysts for Microbial Fuel Cells
- Bacterially Generated Nanocatalysts and Their Applications
- Current Trends in Development of Photosynthetic Bioelectrochemical Systems for Light Energy Conversion
- Significance of Nanostructures of an Electrode Surface in Direct Electron Transfer-Type Bioelectrocatalysis of Redox Enzymes
- Modified Stainless Steel as Anode Materials in Bioelectrochemical Systems
- Studies on Controlled Protein Folding versus Direct Electron-Transfer Reaction of Cytochrome C on MWCNT/Nafion Modified Electrode Surface and Its Selective Bioelectrocatalytic H2O2 Reduction and Sensing Function
- Novel Bioelectrocatalytic Strategies Based on Immobilized Redox Metalloenzymes on Tailored Electrodes
- Recent Advances on Metal Organic Framework–Derived Catalysts for Electrochemical Oxygen Reduction Reaction
- Editors’ Biographies
- Indexes
- Author Index
- Subject Index