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MSE PRO 99.8% 20-30nm Anatase TiO2 Nanoparticles For Battery Research– MSE Supplies LLC

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MSE PRO 99.8% 20-30nm Anatase Titanium Dioxide TiO<sub>2</sub> Nanoparticles For Battery Research, 500g

MSE PRO 99.8% 20-30nm Anatase Titanium Dioxide TiO2 Nanoparticles For Battery Research, 500g

SKU: PO0509

  • $ 11995
  • Save $ 1000



MSE PRO™ 99.8% 20-30nm Anatase Titanium Dioxide

TiO2 Nanoparticles For Battery Research, 500g 

MSE PRO™ 99.8% 20-30nm Anatase Titanium Dioxide Nanoparticles are designed to meet the demands of high-end technology, particularly in lithium-ion batteries. They feature a large lithium capacity, low energy consumption, high specific capacity, good cycle stability, and environmental friendliness, making them widely used as additives in lithium battery cathode materials, can synthesize lithium titanate, improve battery capacity and cycle.

  • Increased Energy Density: Enhances the overall energy capacity of the battery.
  • Improved Cycle Stability: Extends the lifespan of the battery through better performance over multiple charge-discharge cycles.
  • Reduced Internal Resistance: Lowers resistance, leading to more efficient energy transfer.
  • Enhanced Charge/Discharge Efficiency: Improves the overall efficiency during charging and discharging processes.
  • Better Thermal Stability: Offers improved stability under varying temperature conditions.
  • Environmental Friendliness: Considered eco-friendly, making it a sustainable choice for battery applications.

MSE Supplies offers a range of Titanium Dioxide Nanoparticles with varying particle sizes and purities. Please contact us for more information.

Specifications:

SKU#

PO0509

Appearance White powder
Specific Surface Area

60-90 m2/g

Purity 99.8%
Crystallographic

Anatase

Pack Size

500 g/pack


Reference:

[1] Kang, Xiaolan, et al. "Titanium dioxide: from engineering to applications." Catalysts 9.2 (2019): 191.

[2] Haider, Adawiyah J., Zainab N. Jameel, and Imad HM Al-Hussaini. "Review on: titanium dioxide applications." Energy Procedia 157 (2019): 17-29.