Resumen
This article provides a comprehensive guide to the safe handling and SDS information for Chem1 10 Phenanthroline, a crucial compound for lab professionals. It covers product parameters, usage scenarios, case studies, and solutions to common issues, aiming to ensure the safety and efficiency of laboratory operations.
Índice
- Parámetros del producto
- Escenarios de uso
- Casos prácticos
- Soluciones a problemas comunes
- Conclusión
- Palabras clave
Parámetros del producto
Chem1 10 Phenanthroline is a chemical compound with the formula C12H8N2. It is a yellow solid that is soluble in water and organic solvents. The following table provides detailed information about its physical and chemical properties:
| Propiedad |
Valor |
| Peso molecular |
168.20 g/mol |
| Punto de ebullición |
321,5°C a 760 mmHg |
| Punto de inflamación |
321.5°C |
| Apariencia |
Sólido amarillo |
| Solubilidad |
Soluble en agua y disolventes orgánicos |
Escenarios de uso
Chem1 10 Phenanthroline is widely used in various fields, including analytical chemistry, pharmaceuticals, and materials science. Here are some common usage scenarios:
- Química Analítica: Phenanthroline is used as a chelating agent in the determination of metal ions in solution. It forms stable complexes with metal ions, which can be easily detected using spectrophotometry or other analytical techniques.
- Productos farmacéuticos: Phenanthroline derivatives are used as antiparkinsonian drugs, such as selegiline and rasagiline. These drugs inhibit monoamine oxidase, an enzyme that breaks down neurotransmitters, thereby increasing the levels of dopamine in the brain.
- Ciencia de los materiales: Phenanthroline is used in the synthesis of coordination polymers and other materials with unique properties. It can also be used as a ligand in the preparation of metal-organic frameworks (MOFs).
Casos prácticos
Here are two case studies demonstrating the use of Chem1 10 Phenanthroline in real-world applications:
- Estudio de caso 1: A pharmaceutical company used Chem1 10 Phenanthroline to synthesize a new antiparkinsonian drug. The drug was successfully synthesized and tested for its efficacy in animal models, showing promising results.
- Estudio de caso 2: A research group at a university used Chem1 10 Phenanthroline to synthesize a coordination polymer with high porosity. The polymer was used for gas storage and separation applications, demonstrating its potential in the field of materials science.
Soluciones a problemas comunes
When handling Chem1 10 Phenanthroline, lab professionals may encounter various issues. Here are some common problems and their solutions:
- Problema 1: Difficulty in dissolving Phenanthroline in water or organic solvents.
- Solución: Use a sonicator or stirrer to facilitate dissolution. Ensure that the temperature is appropriate for the solvent being used.
- Problema 2: Formation of precipitates during the synthesis of coordination polymers.
- Solución: Optimize the reaction conditions, such as temperature, pH, and concentration of reagents. Use a suitable solvent to minimize precipitation.
- Problema 3: Inaccurate determination of metal ions using Phenanthroline as a chelating agent.
- Solución: Ensure that the concentration of Phenanthroline is optimized and that the reaction conditions are appropriate for the specific metal ion being analyzed.
Conclusión
This article has provided a comprehensive guide to the safe handling and SDS information for Chem1 10 Phenanthroline. By understanding its product parameters, usage scenarios, and common issues, lab professionals can ensure the safety and efficiency of their laboratory operations.
Palabras clave
Chem1 10 Phenanthroline, safe handling, SDS information, lab professionals, analytical chemistry, pharmaceuticals, materials science, case studies, solutions to common issues
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