Lithium Bis(oxalato)Borate: Powering the Future of Lithium-Ion Batteries

Discover how Lithium Bis(oxalato)Borate (LiBOB) is revolutionizing energy storage with its exceptional properties, enhancing the performance, safety, and longevity of advanced lithium-ion batteries. Explore its role as a critical conductive salt and electrolyte additive.

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Key Advantages of Using LiBOB

Enhanced Thermal Stability

LiBOB demonstrates superior thermal stability compared to traditional salts, contributing to safer battery operation under demanding conditions and mitigating thermal runaway risks. This makes it an excellent choice for high-voltage lithium ion battery salt applications.

Optimal SEI Layer Formation

The compound effectively forms a stable solid electrolyte interphase (SEI) layer on electrode surfaces, crucial for preventing electrolyte decomposition and ensuring efficient ion transport. This improves the overall lithium-ion battery performance.

Hydrofluoric Acid Scavenging

LiBOB acts as a potent scavenger for hydrofluoric acid (HF), a common degradation product that can damage battery components. This protective function is key to extending battery life and maintaining performance integrity.

Applications in Advanced Energy Storage

High-Performance Lithium-Ion Batteries

LiBOB is a primary conductive salt used in the formulation of electrolytes for high-performance lithium-ion batteries, offering improved conductivity and stability.

Lithium-Ion Polymer Batteries

Its compatibility with polymer electrolytes makes LiBOB an ideal choice for flexible and robust lithium-ion polymer battery designs.

Electrolyte Additive

Utilized as an additive, LiBOB significantly enhances the electrochemical performance and safety characteristics of existing battery electrolyte systems.

Advanced Battery Chemistries

LiBOB is being explored in next-generation battery technologies, contributing to breakthroughs in energy density and cycle life.