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Anode-Free Rechargeable Batteries
Anode-Free Rechargeable Batteries
Knygos.lt klubas Knygos.lt nariams
151,83 €
-35%
Įprastai
233,59 €
  • Planuojame turėti už 66 d.
Advance anode-free battery development from fundamentals to cell upscaling Anode-free architectures eliminate excess metal anodes, yielding higher energy density, reduced weight, and simplified manufacturing. Anode-Free Rechargeable Batteries: Design, Performance, and Upscaling delivers a structured treatment spanning lithium, sodium, zinc, and post-lithium chemistries. The book integrates fundamental operating principles, interphase engineering, materials selection, and system-level design int…
  • Leidėjas:
  • Metai: 2026
  • Puslapiai: 256
  • ISBN-10: 3527357327
  • ISBN-13: 9783527357321
  • Kalba: Anglų

Anode-Free Rechargeable Batteries (el. knyga) (skaityta knyga) | knygos.lt

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Advance anode-free battery development from fundamentals to cell upscaling

Anode-free architectures eliminate excess metal anodes, yielding higher energy density, reduced weight, and simplified manufacturing. Anode-Free Rechargeable Batteries: Design, Performance, and Upscaling delivers a structured treatment spanning lithium, sodium, zinc, and post-lithium chemistries. The book integrates fundamental operating principles, interphase engineering, materials selection, and system-level design into a single reference for researchers and engineers working in energy storage.

Coverage progresses from electrochemistry fundamentals to advanced topics including electrolyte regulation, current collector modification, and failure mechanism analysis. Performance-comparison tables and illustrated examples enable direct evaluation across competing chemistries. A unified benchmarking framework establishes standardized test protocols and a practical roadmap for scaling from coin cells to pouch cells under real-world manufacturing constraints.

The book also covers:

  • Detailed treatment of anode-free sodium and zinc battery systems alongside emerging post-lithium chemistries and their specific design challenges
  • Interphase engineering strategies addressing dendrite formation, Coulombic efficiency losses, and cycle life degradation in metal-free anode configurations
  • Practical design rules linking electrolyte formulation, current collector surface treatment, and cell architecture to measurable electrochemical performance metrics
  • A commercialization roadmap addressing cost reduction, safety assessment protocols, and manufacturing scalability for transitioning laboratory results to production
  • Systematic comparison of lithium, sodium, and zinc systems using standardized metrics clarifying trade-offs in energy density and longevity

Designed for electrochemists, materials scientists, physical chemists, and solid-state chemists working in energy storage, this reference equips researchers and engineers with the benchmarking tools, design principles, and scaling strategies needed to advance anode-free battery systems from laboratory concept to commercial deployment.

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  • Leidėjas:
  • Metai: 2026
  • Puslapiai: 256
  • ISBN-10: 3527357327
  • ISBN-13: 9783527357321
  • Kalba: Anglų

Advance anode-free battery development from fundamentals to cell upscaling

Anode-free architectures eliminate excess metal anodes, yielding higher energy density, reduced weight, and simplified manufacturing. Anode-Free Rechargeable Batteries: Design, Performance, and Upscaling delivers a structured treatment spanning lithium, sodium, zinc, and post-lithium chemistries. The book integrates fundamental operating principles, interphase engineering, materials selection, and system-level design into a single reference for researchers and engineers working in energy storage.

Coverage progresses from electrochemistry fundamentals to advanced topics including electrolyte regulation, current collector modification, and failure mechanism analysis. Performance-comparison tables and illustrated examples enable direct evaluation across competing chemistries. A unified benchmarking framework establishes standardized test protocols and a practical roadmap for scaling from coin cells to pouch cells under real-world manufacturing constraints.

The book also covers:

  • Detailed treatment of anode-free sodium and zinc battery systems alongside emerging post-lithium chemistries and their specific design challenges
  • Interphase engineering strategies addressing dendrite formation, Coulombic efficiency losses, and cycle life degradation in metal-free anode configurations
  • Practical design rules linking electrolyte formulation, current collector surface treatment, and cell architecture to measurable electrochemical performance metrics
  • A commercialization roadmap addressing cost reduction, safety assessment protocols, and manufacturing scalability for transitioning laboratory results to production
  • Systematic comparison of lithium, sodium, and zinc systems using standardized metrics clarifying trade-offs in energy density and longevity

Designed for electrochemists, materials scientists, physical chemists, and solid-state chemists working in energy storage, this reference equips researchers and engineers with the benchmarking tools, design principles, and scaling strategies needed to advance anode-free battery systems from laboratory concept to commercial deployment.

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