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The book "Advanced Materials for Electrochemical Energy Conversion and Storage Devices" reports new, improved electrocatalytic materials for batteries, capacitors, and fuel cells. These advances are expected to significantly impact the performance of electrochemical energy conversion and storage devices and, consequently, their commercialisation. This book is intended to be a valuable tool for those from industry and academia interested in knowing more about the field.
Research & information: general --- sol-gel synthesis --- EDTA chelator --- cathode materials --- layered oxide --- doping --- lithium-ion batteries --- alkaline electrolyser --- electrocatalyst --- electrodeposition --- energy material --- nanofilm --- nickel foam --- oxygen evolution reaction --- PANI, LiFePO4 --- conducting polymers --- hybrid materials --- Li-doped NiO --- microwave synthesis --- computational simulation --- electrochemical measurements --- photoluminescence --- MC polymer electrolyte --- impedance study --- ion transport --- ftir analysis --- TNM --- LSV --- CV analyses --- n/a
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The book "Advanced Materials for Electrochemical Energy Conversion and Storage Devices" reports new, improved electrocatalytic materials for batteries, capacitors, and fuel cells. These advances are expected to significantly impact the performance of electrochemical energy conversion and storage devices and, consequently, their commercialisation. This book is intended to be a valuable tool for those from industry and academia interested in knowing more about the field.
sol-gel synthesis --- EDTA chelator --- cathode materials --- layered oxide --- doping --- lithium-ion batteries --- alkaline electrolyser --- electrocatalyst --- electrodeposition --- energy material --- nanofilm --- nickel foam --- oxygen evolution reaction --- PANI, LiFePO4 --- conducting polymers --- hybrid materials --- Li-doped NiO --- microwave synthesis --- computational simulation --- electrochemical measurements --- photoluminescence --- MC polymer electrolyte --- impedance study --- ion transport --- ftir analysis --- TNM --- LSV --- CV analyses --- n/a
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The book "Advanced Materials for Electrochemical Energy Conversion and Storage Devices" reports new, improved electrocatalytic materials for batteries, capacitors, and fuel cells. These advances are expected to significantly impact the performance of electrochemical energy conversion and storage devices and, consequently, their commercialisation. This book is intended to be a valuable tool for those from industry and academia interested in knowing more about the field.
Research & information: general --- sol-gel synthesis --- EDTA chelator --- cathode materials --- layered oxide --- doping --- lithium-ion batteries --- alkaline electrolyser --- electrocatalyst --- electrodeposition --- energy material --- nanofilm --- nickel foam --- oxygen evolution reaction --- PANI, LiFePO4 --- conducting polymers --- hybrid materials --- Li-doped NiO --- microwave synthesis --- computational simulation --- electrochemical measurements --- photoluminescence --- MC polymer electrolyte --- impedance study --- ion transport --- ftir analysis --- TNM --- LSV --- CV analyses
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fysicochemie --- Electrochemistry --- Electrodes --- Electrochimie --- Tables --- Electrodes. --- Electrochemistry. --- 541.134 <083> --- #ABIB:adid --- elektrode --- Electrochemistries --- Anode --- Cathode --- Anodes --- Cathodes --- Electrode --- Electromotive force. Potential series--Tabellen. Lijsten. Indices --(niet-bibliografische) --- Tables. --- 541.134 <083> Electromotive force. Potential series--Tabellen. Lijsten. Indices --(niet-bibliografische) --- Electric resistors --- Chemistry, Physical and theoretical --- Anode Materials --- Cathode Materials --- Anode Material --- Cathode Material --- Material, Anode --- Material, Cathode --- Electrodes - Tables --- Electrochemistry - Tables --- Electric potential
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Ion Exchange. --- Electrodes. --- Electrochemistry. --- 541.135.5 --- 543.25 --- Electrochemistries --- Anode --- Cathode --- Anodes --- Cathodes --- Electrode --- Exchange, Ion --- Electrodes and diaphragms, e.g. --- Electroanalysis. Electrolytic methods. Electrometric methods --- Analytische toepassingen --- Ionselectieve elektroden --- Analytische toepassingen. --- Ionselectieve elektroden. --- 543.25 Electroanalysis. Electrolytic methods. Electrometric methods --- 541.135.5 Electrodes and diaphragms, e.g. --- Ion Exchange --- Electrodes --- Electrochemistry --- Electrodes and diaphragms, e.g --- Anode Materials --- Cathode Materials --- Anode Material --- Cathode Material --- Material, Anode --- Material, Cathode --- Electrochemical analysis --- Electrodes, ion selective
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Chimie analytique --- Analytical chemistry --- Électrode --- Electrodes --- Technique analytique --- Analytical methods --- methods --- Chemistry Techniques, Analytical --- Chemistry, Organic --- Electrochemistry. --- Electrodes. --- Ion Exchange. --- 541.135.5 --- 543.25 --- 543.8 --- Exchange, Ion --- Anode --- Cathode --- Anodes --- Cathodes --- Electrode --- Electrochemistries --- methods. --- Electrodes and diaphragms, e.g. --- Electroanalysis. Electrolytic methods. Electrometric methods --- Analysis of organic substances --- 543.8 Analysis of organic substances --- 543.25 Electroanalysis. Electrolytic methods. Electrometric methods --- 541.135.5 Electrodes and diaphragms, e.g. --- Anode Materials --- Cathode Materials --- Anode Material --- Cathode Material --- Material, Anode --- Material, Cathode --- Electrochemistry --- Ion Exchange --- Chimie organique --- Ion-selective electrode
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Electrochemical energy storage is becoming essential for portable electronics, electrified transportation, integration of intermittent renewable energy into grids, and many other energy and power applications. The electrode materials and their structures, in addition to the electrolytes, play key roles in supporting a multitude of coupled physicochemical processes that include electronic, ionic, and diffusive transport in electrode and electrolyte phases, electrochemical reactions and material phase changes, as well as mechanical and thermal stresses, thus determining the storage energy density and power density, conversion efficiency, performance lifetime, and system cost and safety. Different material chemistries and multiscale porous structures are being investigated for high performance and low cost. The aim of this Special Issue is to report the recent advances in materials used in electrochemical energy storage that encompass supercapacitors and rechargeable batteries.
lithium ion batteries --- microstructure --- zinc sulfide --- material index --- solid-state complexation method --- submicron powder --- X-ray diffraction --- vertical graphene --- garnet --- electrochemical energy storage --- biotemplate --- nanotubes --- cathode material --- Cr3+/Cr6+ redox pairs --- mechanical stability --- cathode materials --- supercapacitors --- electrochemical properties --- Co-doping --- elasto-plastic stress --- inductively-coupled plasma --- water --- voltage decay --- Mn3O4 --- thermal annealing --- parametric analysis --- solid-state batteries --- pulse power storage --- cycling performance --- energy storage and conversion --- anode material --- carbon nanostructures --- Li ion battery --- electrode materials --- Li2MoO3 --- lithium-ion conductivity --- lithium-ion batteries --- voltage attenuation --- methanol --- specific capacity --- lithium-ion battery --- sulfidation --- solid-state electrolyte --- lithium-rich layered oxide --- Li-rich layered oxide --- carbon microfibers --- specific capacitance --- nanostructure --- green synthesis route --- 0.5Li2MnO3·0.5LiMn0.8Ni0.1Co0.1O2 --- ZIF-67 --- co-precipitation method --- high-rate supercapacitor --- LiFePO4/C composite --- AC filtering --- sol–gel method --- electrochemical performance --- cross-linked carbon nanofiber
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Health Occupations --- Engineering --- Software --- Electrodes --- Central Nervous System --- Equipment and Supplies --- Anatomy --- Disciplines and Occupations --- Computing Methodologies --- Electrical Equipment and Supplies --- Analytical, Diagnostic and Therapeutic Techniques and Equipment --- Technology, Industry, and Agriculture --- Technology, Industry, Agriculture --- Information Science --- Nervous System --- Electrodes, Implanted --- Biomedical Engineering --- Brain --- Prostheses and Implants --- User-Computer Interface --- Computer Applications Software --- Computer Programs and Programming --- Computer Software Applications --- Computer Programs --- Computer Software --- Software Engineering --- Software Tools --- Application, Computer Software --- Applications Software, Computer --- Applications Softwares, Computer --- Applications, Computer Software --- Computer Applications Softwares --- Computer Program --- Computer Software Application --- Engineering, Software --- Program, Computer --- Programs, Computer --- Software Application, Computer --- Software Applications, Computer --- Software Tool --- Software, Computer --- Software, Computer Applications --- Softwares, Computer Applications --- Tool, Software --- Tools, Software --- Search Engine --- User Computer Interface --- Interface, User Computer --- Virtual Systems --- Interface, User-Computer --- Interfaces, User Computer --- Interfaces, User-Computer --- System, Virtual --- Systems, Virtual --- User Computer Interfaces --- User-Computer Interfaces --- Virtual System --- Speech Recognition Software --- Brain-Computer Interfaces --- Endoprostheses --- Endoprosthesis --- Prostheses --- Prosthetic Implants --- Implants, Artificial --- Prosthesis --- Artificial Implant --- Artificial Implants --- Implant, Artificial --- Implant, Prosthetic --- Implants and Prostheses --- Implants, Prosthetic --- Prosthetic Implant --- Prosthesis Retention --- Encephalon --- Engineering, Biomedical --- Clinical Engineering --- Engineering, Clinical --- Biomedical Technology --- Implantable Electrodes --- Implantable Stimulation Electrodes --- Implanted Electrodes --- Implanted Stimulation Electrodes --- Electrode, Implantable --- Electrode, Implantable Stimulation --- Electrode, Implanted --- Electrode, Implanted Stimulation --- Electrodes, Implantable --- Electrodes, Implantable Stimulation --- Electrodes, Implanted Stimulation --- Implantable Electrode --- Implantable Stimulation Electrode --- Implanted Electrode --- Implanted Stimulation Electrode --- Stimulation Electrode, Implantable --- Stimulation Electrode, Implanted --- Stimulation Electrodes, Implantable --- Stimulation Electrodes, Implanted --- Nervous Systems --- System, Nervous --- Systems, Nervous --- Information Sciences --- Science, Information --- Sciences, Information --- Electronic Equipment and Supplies --- Electronics --- High Performance Computing --- Methodologies, Computing --- Computing Methodology --- Computing, High Performance --- Methodology, Computing --- Performance Computing, High --- Anatomies --- Device, Medical --- Devices, Medical --- Equipment --- Inventories --- Medical Device --- Supplies --- Apparatus and Instruments --- Devices --- Medical Devices --- Device --- Instruments and Apparatus --- Inventory --- Supplies and Equipment --- Cerebrospinal Axis --- Axi, Cerebrospinal --- Axis, Cerebrospinal --- Central Nervous Systems --- Cerebrospinal Axi --- Nervous System, Central --- Nervous Systems, Central --- Systems, Central Nervous --- Anode --- Cathode --- Anodes --- Cathodes --- Electrode --- Engineerings --- Health Professions --- Health Occupation --- Health Profession --- Profession, Health --- Professions, Health --- Occupations --- Anode Materials --- Cathode Materials --- Anode Material --- Cathode Material --- Material, Anode --- Material, Cathode --- Vocations --- Occupation --- Vocation --- Occupational Groups --- Health Occupations. --- Engineering. --- Software. --- Electrodes. --- Central Nervous System. --- Equipment and Supplies. --- Anatomy. --- Occupations. --- Computing Methodologies. --- Electrical Equipment and Supplies. --- Technology, Industry, and Agriculture. --- Information Science. --- Nervous System. --- Electrodes, Implanted. --- Biomedical Engineering. --- Brain. --- Prostheses and Implants. --- User-Computer Interface.
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