Skip to product information
Lithium Titanate (Li4Ti5O12) Powder (Pristine or Carbon Coating) for Li-Ion Battery Anode, 100 g/bottle, CLIBALTO

Lithium Titanate (Li4Ti5O12) Powder (Pristine or Carbon Coating) for Li-Ion Battery Anode, 100 g/bottle, CLIBALTO

$99.00 USD
In Stock SKU: CLIBALTOP
Use your own shipping account?

We support FedEx, UPS, and DHL third-party billing for institutional customers.

Place your order first, then email shipping@echemsupplies.com with your account details and order number. We'll generate the label using your account and refund your shipping charges, less a handling fee.

Review third-party shipping terms →


Lithium titanate (Li4Ti5O12) a spinel-structured anode material for lithium-ion batteries, which is used as the active material in place of traditional graphite. It possesses the following key features:

  • Operating potential ≈1.55 V vs Li+/Li (above plating potential) — greatly reduces lithium dendrite risk.
  • Excellent structural stability with negligible volume change (~0.2%) on lithiation — exceptional cycle life.
  • Good rate capability (fast Li+ diffusion in the spinel structure) and safety.
    Moderate specific capacity ≈175 mAh/g (theoretical ~175 mAh/g, practical ~150–170 mAh/g).
  • High first-cycle coulombic efficiency and long calendar life.
  • Lower cell-level energy density because the higher anode potential reduces full-cell voltage versus graphite.
Part Number

CLIBALTO (C-LIB-A-LTO)

Chemical Formula

Li4Ti5O12 (pristine) or Li4Ti5O12@C (carbon coated)

 Particle Size

D 10 = 0.6 um,  D50 = 1.3 um,  D90 = 12.0 um

Specific Surface Area

~6.0 m2/g

Tap Density

0.65 g/cm3

First Discharging Capacity

~160 mAh/g (1.0 C)

First Columbic Efficiency

95.0 %

 

References

  1. G. N. Zhu, et al. A Comprehensive Study of Effects of Carbon Coating on Li4Ti5O12 Anode Material for Lithium-Ion Batteries, J. Electrochem. Soc., 2011, 158, A102.
  2. X. Guo, et al. Carbon coating of Li4Ti5O12 using amphiphilic carbonaceous material for improvement of lithium-ion battery performance, J. Power Sources, 2012, 214, 107-112.

You may also like