Electrochemically Enabled Sustainability

Electrochemically Enabled Sustainability

Devices, Materials and Mechanisms for Energy Conversion

Li, Chi-Ying Vanessa; Chan, Kwong-Yu

Taylor & Francis Ltd

10/2024

520

Mole

9781032919096

Pré-lançamento - envio 15 a 20 dias após a sua edição

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Electroreduction of Carbon Dioxide. Microbial Fuel Cells and Other Bio-Electrochemical Conversion Devices. Lithium Batteries: Status and Future. Hollow Mesoporous Carbon with Hierarchical Nanoarchitecture in Electrochemical Energy Storage and Conversion. Layer-Structured Cathode Materials for Energy Storage. First-Principles Approach for Cathode Design and Characterisation. Advanced Batteries and Improvements in Electrode Materials. Lead-Carbon Hybrid Ultracapacitors and Their Applications. Vanadium Flow Batteries: From Materials to Large-Scale Prototypes. Physical Properties of Negative Half-Cell Electrolytes in the Vanadium Redox Flow Battery. pH Differential Power Sources with Electrochemical Neutralisation. Index.
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American Chemical Society;Energy Density;hybrid;MFC;electric;Cathode Materials;vehicles;Graphite Felt;cathode;Fuel Cell;materials;LIBs;ion;Li Ion;capacitor;CO2 Electroreduction;lithium;Ap Ac;battery;Ce Ll;american;Rechargeable Lithium Batteries;Anode Material;Air Cathode MFC;Lead Acid Battery;Lithium Air Battery;Sulphuric Acid Concentration;Single Chamber Air Cathode;Electrochemical Capacitors;Transition Metal;MFC Performance;Vanadium Ions;PEM;Bpm;Irreversible Capacity