LPS
1. Strong expandability, can be used as raw materials to synthesize various systems of electrolyte materials in a simple and efficient manner;
2. High ionic conductivity, >0.1 mS/cm under room temperature, suitable for various usage scenarios;
3. Suitable for various cathode systems, including ultra-high voltage cathode (oxide coating needed for cathode active materials);
4. Suitable for graphite and other anode systems;
5. Low density, effectively improving energy density of batteries;
6. Small particle size, uniform size distribution, can be adapted to a variety of particle size of active materials;
7. Low hardness, strong ductility, can be independently formed into a film, effectively coated on the surface of active material particles; low Young's modulus, good elasticity, can withstand large volume changes in battery cycle processes.
1. Suitable for all kinds of all-solid-state batteries and semi-solid-state batteries, including electrolyte material synthesis and battery material modification.
2. Especially suitable as raw material for the synthesis of electrolyte materials of various systems.

LPSX
1. High ionic conductivity, >1 mS/cm under room temperature, suitable for various usage scenarios;
2. Wide electrochemical window, good interface stability, effectively enhancing the calendar life and cycle life of batteries;
3. Suitable for various cathode systems, including ultra-high voltage cathode (oxide coating needed for cathode active materials);
4. Suitable for various anode systems, especially suitable for lithium metal (and its alloy) and graphite anodes;
5. Low density, effectively improving energy density of batteries;
6. Small particle size, uniform size distribution, can be adapted to a variety of particle size of active materials;
7. Low hardness, strong ductility, can be independently formed into a film, effectively coated on the surface of active material particles; low Young's modulus, good elasticity, can withstand large volume changes in battery cycle processes.
1. Suitable for all kinds of all-solid-state batteries and semi-solid-state batteries, including electrolyte material synthesis and battery material modification.
2. Especially suitable for various high energy density, high voltage cathode and anode systems.
3. Can be used independently on cathodes, anodes or electrolyte layers.
4. Can be used in the synthesis of dry electrode.

LSS
1. High ionic conductivity, >0.1 mS/cm under room temperature, suitable for various usage scenarios;
2. Stable in air, can be used in atmospheric conditions;
3. Stable in water, can be used as water solution;
4. Suitable for various cathode systems, including ultra-high voltage cathode (oxide coating needed for cathode active materials);
5. Suitable for graphite and other anode systems;
6. Low density, effectively improving energy density of batteries;
7. Small particle size, uniform size distribution, can be adapted to a variety of particle size of active materials;
8. Low hardness, strong ductility, can be independently formed into a film, effectively coated on the surface of active material particles; low Young's modulus, good elasticity, can withstand large volume changes in battery cycle processes.
1. Suitable for all kinds of all-solid-state batteries and semi-solid-state batteries, including electrolyte material synthesis and battery material modification.
2. Especially suitable for environments with high water and oxygen content.
