
IRON(II) OXALATE, with the CAS number 6047-25-2, is a chemical compound with specific characteristics. The chemical formula of iron(II) oxalate is FeC₂O₄. It usually appears as a light - green crystalline solid. The molar mass of this compound is approximately 143.86 g/mol. It is relatively stable under normal conditions but may decompose upon heating. Solubility is an important parameter; it is insoluble in water but can react with some acids to form soluble salts. In terms of purity, our high - quality iron(II) oxalate product has a purity that meets strict industry standards, ensuring reliable performance in various applications.
Iron(II) oxalate has a wide range of applications. In the field of materials science, it is used as a precursor for the synthesis of iron - based nanomaterials. These nanomaterials have potential uses in catalysis, magnetic materials, and energy storage devices such as lithium - ion batteries. In the chemical industry, it can be used in redox reactions due to the presence of iron in the +2 oxidation state. It can act as a reducing agent in certain chemical processes. Additionally, in the field of photography, iron(II) oxalate has historical uses in developing photographic images. It can react with silver salts to form the visible image on the photographic plate.
When using iron(II) oxalate, safety precautions should be taken. Wear appropriate personal protective equipment, including gloves and safety glasses. For laboratory applications, when dissolving iron(II) oxalate in an acid, add the compound slowly to the acid solution while stirring gently in a well - ventilated area. If it is used in a synthesis reaction, carefully control the reaction conditions such as temperature, pressure, and reaction time according to the specific reaction requirements. In industrial applications, follow the standard operating procedures of the production line. Ensure proper storage of the product in a cool, dry place away from incompatible substances.
Case 1: Nanomaterial Synthesis in Research Lab
A research team was working on synthesizing iron - oxide nanorods for catalytic applications. They used iron(II) oxalate as the iron source. First, they dissolved iron(II) oxalate in a diluted hydrochloric acid solution to form a homogeneous solution. Then, they added a precipitating agent under controlled temperature and pH conditions. After a series of heat - treatment steps, they successfully obtained high - quality iron - oxide nanorods with uniform size and shape. These nanorods showed excellent catalytic activity in the degradation of organic pollutants in water.
Case 2: Industrial Use in Battery Production
An industrial battery manufacturer was looking for a high - quality iron source for their lithium - ion battery cathodes. They chose our iron(II) oxalate. After a series of processing steps including mixing with other cathode materials and sintering, the resulting cathodes had improved electrochemical performance. The batteries showed higher specific capacity, better cycling stability, and longer service life, which significantly improved the overall quality of their battery products.
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