Lithium Titanate (Li₄Ti₅O₁₂) Powder

Premium Lithium Titanate (Li₄Ti₅O₁₂) Powder designed as a high-performance anode material for advanced lithium-ion battery systems. This spinel-phase titanate powder offers excellent structural stability, enhanced safety, and consistent electrochemical performance, making it suitable for R&D, prototype development, and energy storage applications.

Product Code: MT-MAT-2025

Key Specification

Attribute Details
Material Lithium Titanate (Li₄Ti₅O₁₂) Powder
Product Code MT-MAT-2025
Chemical Formula Li₄Ti₅O₁₂
Particle Size Distribution (D10) 0.1–0.4 µm
Median Particle Size (D50) 0.5–1.0 µm
Upper Particle Size (D90) ≤ 5.0 µm
Tap Density ≥ 1.0 g/cm³
Specific Surface Area (BET) 2.0–6.0 m²/g
Titanium (Ti) Content 50.14–52.14 %
Lithium (Li) Content 5.80–6.70 %
Moisture (H₂O) ≤ 0.2 %
Electrical Capacity (First Discharge) ≥ 165 mAh/g (0.1 C, 0.8–2.7 V)
First Coulombic Efficiency ≥ 90 %
Forms Available 150 g Packed Powder
Product Overview

Matlabs Technologies’ Lithium Titanate (Li₄Ti₅O₁₂) Powder is an advanced anode material engineered for lithium-ion battery applications that require exceptional cycle life, safety, and rate capability. As a spinel-structured oxide, LTO exhibits “zero-strain” behavior during lithium intercalation/de-intercalation, leading to minimal volume change, outstanding dimensional stability, and excellent long-term performance.

This powder enables:

  • Fast charge/discharge capability, supporting high-rate applications and quick cycling.
  • Stable cycling with low degradation due to the zero-strain spinel structure.
  • Enhanced safety and thermal stability, ideal for demanding environments and energy storage systems.

Li₄Ti₅O₁₂ is also known for its compatibility with high-voltage cathodes (such as NMC and LFP), making it a favored choice in next-generation battery research and prototype cell construction.

Features & Benefits

Zero-strain Structure – Minimizes volume change during cycling for extended lifespan.
High Tap Density – Supports dense packing in electrode fabrication.
High First Discharge Capacity – ≥ 165 mAh/g under standard test conditions.
Excellent Safety Profile – Improved thermal and chemical stability compared to conventional anode materials.
Consistent Particle Quality – Controlled particle size distribution for reproducible coating and electrode performance.

Typical Applications
  • Lithium-Ion Battery Anodes – Ideal for stable, long-life anode material.
  • Energy Storage Systems (ESS) – Supports high-cycle and rapid charge requirements.
  • Electric Vehicles & Power Tools – Enhanced safety and rate performance applications.
  • R&D & Prototype Cells – Useful for research labs and experimental cell chemistry.
Packaging & Handling

Supplied as a 150 g bag of powder with protective packaging to maintain material quality and prevent moisture uptake. Store in a dry, controlled environment. Use appropriate PPE when handling powder materials and follow safety data guidelines.

Download detailed product technical specifications for more details

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