
High Quality Lithium Oxalate with CAS 553 - 91 - 3 is a chemical compound that is well - known for its high purity and low price. The chemical formula of lithium oxalate is Li₂C₂O₄. It appears as a white crystalline powder. In terms of physical properties, it has a melting point of around 280 - 300°C. Lithium oxalate is sparingly soluble in water but soluble in acids. The high - quality specification of this product ensures that it meets strict industry standards, with very low levels of impurities such as heavy metals and other contaminants.
1. **Battery Industry**: Lithium oxalate is used in the production of lithium - ion batteries. It can be employed as an additive in the electrolyte of the battery. The addition can improve the battery's cycling performance, increase its capacity, and enhance its safety features. For example, it helps in forming a stable solid - electrolyte interface (SEI) layer on the anode surface, which is crucial for the long - term stability of the battery.
2. **Chemical Synthesis**: It serves as a valuable reagent in various chemical synthesis processes. It can be used in the preparation of other lithium - containing compounds. For instance, it can react with certain metal salts to form lithium metal complexes, which have applications in catalysis and materials science.
3. **Ceramics and Glass Industry**: In the ceramics and glass manufacturing sector, lithium oxalate can be used as a fluxing agent. It helps to lower the melting point of the raw materials, reduce energy consumption during the production process, and improve the mechanical and optical properties of the final products.
1. **Battery Applications**: When using lithium oxalate in battery production, it should be added to the electrolyte solution in a controlled manner. First, measure the appropriate amount of lithium oxalate according to the battery design requirements. Then, dissolve it in the electrolyte solvent under a controlled temperature and stirring conditions. Care must be taken to ensure complete dissolution to avoid any precipitation that could affect the battery performance.
2. **Chemical Synthesis**: In chemical synthesis, lithium oxalate is typically added to the reaction mixture in a step - by - step manner. It should be stored in a dry and cool place before use. When adding it to the reaction, maintain the appropriate reaction temperature, pressure, and pH conditions as specified by the reaction protocol.
3. **Ceramics and Glass**: For the ceramics and glass industry, lithium oxalate is mixed with other raw materials in a specific ratio. The mixture is then subjected to high - temperature sintering or melting processes. Adequate mixing is essential to ensure uniform distribution of lithium oxalate in the final product.
1. **Battery Case Study**: A battery manufacturing company incorporated high - quality lithium oxalate into the electrolyte of its lithium - ion batteries. After several cycles of testing, they found that the addition of lithium oxalate increased the battery's capacity by about 10% compared to the batteries without the additive. The SEI layer formed was more stable, resulting in a longer battery lifespan. The batteries also showed better performance at high and low temperatures, which expanded their application range.
2. **Chemical Synthesis Case Study**: A research group used lithium oxalate to synthesize a novel lithium - metal complex. By carefully controlling the reaction conditions, they were able to obtain a high - yield product with excellent catalytic activity. This complex was then used in an organic synthesis reaction, where it significantly enhanced the reaction rate and selectivity.
3. **Ceramics and Glass Case Study**: A glass manufacturer added lithium oxalate to its glass - making raw materials. The resulting glass products had improved transparency, lower thermal expansion coefficient, and better mechanical strength. The use of lithium oxalate also reduced the melting temperature of the glass batch by about 50°C, leading to significant energy savings.
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Este es William, CEO de Zhishang Chemical Co., Ltd.
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