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Product Line: Electronic Chemicals

Lithium dihydrogen phosphate

CAS 13453-80-0

Molecular structure of Lithium dihydrogen phosphate

CAS · 13453-80-0

01

Product Overview

Lithium dihydrogen phosphate is a high-purity lithium-chemicals supplied for industrial and specialty chemical applications. Contact our team for specifications, packaging options and lead times.

02

Product Specifications

Appearance: White crystalline powder
LiH2PO4(T): 99% min
Na: 0.025% max
K: 0.005% max
Ca: 0.01% max
Mg: 0.01% max
Cu: 0.01% max
Ni: 0.01% max
Zn: 0.01% max
Cr: 0.01% max
Mn: 0.01% max
Cl: 0.01% max
SO42−: 0.08% max
H2O: 0.4% max
PH: 3.3 - 4.3
B: 0.01% max
P: 29.3 - 30.1%
Li: 6.45 - 6.75%
Magnetic substance: 500 ppb max
03

Applications

 

1. Electrolyte Additive in Lithium-ion Batteries

Lithium dihydrogen phosphate is increasingly used as an electrolyte additive in Li-ion battery systems.

It helps improve electrochemical stability, particularly at the cathode–electrolyte interface.

Useful in high-voltage and long-cycle lithium battery chemistries (e.g., LFP, NMC).

2. Ceramic and Glass Materials

Employed as a precursor or dopant in the preparation of lithium-containing ceramics, particularly lithium phosphate-based materials.

Applied in glass manufacturing to modify thermal or optical properties.

3. Research in Solid-State Electrolytes

Investigated as a building block in solid-state lithium electrolytes, such as LiMPO₄ compounds.

Supports R&D for safer, non-flammable batteries.

4. Chemical Intermediate

Can be used in the synthesis of other lithium phosphate compounds, such as lithium iron phosphate (LiFePO₄), a popular cathode material.

04

Benefits

✅ Improves Battery Safety & Stability

Acts as a protective agent that reduces degradation of battery electrodes.

Contributes to thermal and voltage stability, enabling safer high-energy batteries.

✅ Enhances Cycle Life

Stabilizes the cathode-electrolyte interface, leading to extended battery lifespan.

Useful in fast-charging applications where interface degradation is a concern.

✅ High Purity and Compatibility

Compatible with standard lithium battery solvents and materials.

High chemical purity makes it suitable for precision electronic applications.

✅ Environmentally Friendly Lithium Source

Compared to more reactive lithium salts, LiH₂PO₄ is relatively safe to handle and environmentally benign.

✅ Flexible Use Across R&D Fields

Broad utility in materials science, electrochemistry, and energy storage research.

05

Conclusion

Lithium dihydrogen phosphate (CAS 13453-80-0) is a valuable compound in the battery industry, especially for improving the performance and stability of lithium-ion and solid-state batteries. Its chemical stability, environmental compatibility, and role in advanced energy materials make it a key material in modern electrochemical and materials research.

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