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Battery Material

Advanced Battery Material

Advanced Battery Material

High Gap Diaphragm

Diaphragm with a dense porous structure, which allows it to achieve a more uniform pore distribution which in turn can reduce internal resistance and improve discharge performance of our batteries.

Surface SEM image of Battery Diaphragm

Surface SEM image of Battery Diaphragm

Section SEM Portrait image of Battery Diaphragm

Section SEM Portrait image of Battery Diaphragm

Ceramic Diaphragm

The surface-coated nano-ceramic battery separator has the advantages of high temperature resistance, high voltage resistance, high puncture and high liquid absorption, which can greatly improve the heat shrinkage of the diaphragm and improve the safety and reliability of the battery.

Ceramic Coating Test

According to UL1642 heating for 30min (hot oven 130°C).

High Temp Test Result

Cell opening, no fire, no explosion, weight loss ≤ 10%.

Ultrathin Diaphragm

The 9um diaphragm reduces the internal resistance of the battery and increases the volumetric energy density of the battery.

GRP5742085Diaphragm thicknessCapacity (mAh)Internal Resistance (mΩ)Cell Weightg(g)Energy density (Wh/L)
Ultrathin diaphragm9μm25502.245.5464
Ordinary diaphragm12μm25502.542.5409
Ultrathin Comparison

Ultrathin vs Ordinary Diaphragm Comparison

Low Temperature Electrolyte

Comparison of different temperature discharge curves of low temperature batteries.

Discharge Curves

Discharge Curves at Different Temperatures

High Temperature Electrolyte Drone Battery

The cells were stored at 70 ℃ for 7 days, variation of thickness < 5%, recovery capacity > 90%.

High Temp Storage Test

High Temperature Storage Test Results

Bundle CNT (Carbon Nano Tube)

There is few agglomerate in CNT Solution.
In Electrode, CNT is well distributed on the surface of active materials.

CNT Solution and Distribution

CNT Solution and Distribution in Electrode

Better Peeling Strength and Smaller IR

Better Peeling Strength and Smaller IR