Rechargeable battery electrolytes : electrochemical energy storage from liquids to solids
Publication details: Royal Society of Chemistry 2024 LondonDescription: xii, 333pISBN:- 9781839167379
- 621.31242 M11r
Item type | Current library | Collection | Call number | Status | Date due | Barcode | Item holds | |
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PK Kelkar Library, IIT Kanpur | General Stacks | 621.31242 M11r (Browse shelf(Opens below)) | Available | A186808 |
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510 An72 AOMS no.81 Annals of mathematics studies [56-books series] | 531.385 St33c A course on plasticity theory | 621.042 D612i Introduction to energy systems | 621.31242 M11r Rechargeable battery electrolytes electrochemical energy storage from liquids to solids | 621.3128 F962 Functional polymers for metal-ion batteries | 621.3815 F451n Nonlinear optics on ferroic materials | 621.38152 K646f Fundamentals of semiconductor materials and devices |
Rechargeable batteries are one of the crucial ways we are going to solve the sustainable energy crisis. Lithium-ion batteries have been commercialised and are heavily relied upon, however, the scarcity of lithium resources increases the production cost and hinders further application. Additionally, the toxic and flammable electrolyte brings many potential safety hazards including environmental pollution. Looking for low-cost, safe, and environmentally friendly alternatives to LIBs has become a valuable research direction.
The modification of batteries is focused on the anode, the cathode and electrolyte. Globally, researchers have moved onto new rechargeable batteries based on multivalent metal ions which have been extensively studied, including K+, Ca2+, Mg2+ and Al3+. However, the electrolyte is a very important component of a battery as its physical and chemical properties directly affect the electrochemical performance and energy storage mechanism.
Finding and selecting an appropriate electrolyte system is a crucial factor that must be taken into account to make these post-lithium-ion batteries commercially viable. Until now, it has been challenging to develop a suitable electrolyte with a wide electrochemical stability window and stable anode interface.
This book covers all the major ion-battery groups and their electrolytes, examining their performance and suitability in different solvents: aqueous, non-aqueous, solid gel and polymer.
It is suitable for all levels of students and researchers who want to understand the fundamentals and future challenges of developing electrolytes.
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