This article provides a comprehensive overview of Diphenyl Ether (CAS 101-84-8) - Product ID 820978 - EMD Millipore. It delves into the chemical properties, applications, safety considerations, and the role of EMD Millipore in the distribution of this compound. The article aims to offer a detailed understanding of Diphenyl Ether, its significance in various industries, and the importance of responsible handling and distribution by EMD Millipore.
Diphenyl Ether, with the chemical abstract service (CAS) number 101-84-8, is a widely used organic compound. It is a colorless liquid with a sweet, aromatic odor and is commonly used as a solvent in various industrial applications. EMD Millipore, a leading supplier of high-quality laboratory products, offers Diphenyl Ether under the product ID 820978. This article will explore the key aspects of Diphenyl Ether, its applications, and the role of EMD Millipore in its distribution.
Diphenyl Ether is an aromatic ether, characterized by the presence of two phenyl groups attached to an oxygen atom. It has a molecular formula of C12H10O and a molecular weight of 162.21 g/mol. The compound is highly flammable and has a boiling point of approximately 254°C. Due to its low toxicity, Diphenyl Ether is often used in applications where safety is a concern. However, it is important to handle it with care due to its potential to cause irritation to the skin and eyes.
Diphenyl Ether finds extensive use in various industries due to its unique properties. It is primarily used as a solvent in the production of paints, inks, and varnishes. Its ability to dissolve a wide range of organic compounds makes it a valuable component in these applications. Additionally, Diphenyl Ether is used in the pharmaceutical industry for the synthesis of certain drugs and as a reagent in organic synthesis. Its use in these industries highlights its versatility and importance in modern chemistry.
While Diphenyl Ether is a useful compound, it is crucial to consider its safety profile. Exposure to high concentrations of Diphenyl Ether can cause irritation to the skin, eyes, and respiratory system. Therefore, appropriate personal protective equipment (PPE) should be worn when handling the compound. It is also important to ensure proper ventilation in areas where Diphenyl Ether is used or stored. Furthermore, the compound should be disposed of according to local regulations to minimize environmental impact.
EMD Millipore, as a trusted supplier of laboratory products, plays a significant role in the distribution of Diphenyl Ether. The company offers high-quality Diphenyl Ether under the product ID 820978, ensuring that customers receive a reliable and pure product. EMD Millipore's commitment to quality and safety is evident in their stringent quality control measures and adherence to regulatory standards. By providing Diphenyl Ether, EMD Millipore supports researchers and industries in their pursuit of scientific advancements and product development.
The environmental impact of Diphenyl Ether is a concern due to its potential to contaminate soil and water sources. Therefore, it is essential to handle and dispose of the compound responsibly. EMD Millipore, through its distribution of Diphenyl Ether, emphasizes the importance of environmental stewardship. The company provides guidance on proper disposal methods and encourages customers to adopt sustainable practices to minimize the compound's environmental footprint.
Diphenyl Ether (CAS 101-84-8) - Product ID 820978 - EMD Millipore is a versatile organic compound with a wide range of applications. Its chemical properties, safety considerations, and the role of EMD Millipore in its distribution are crucial aspects to understand. By providing a reliable and high-quality product, EMD Millipore supports the scientific community and industries in their use of Diphenyl Ether. As awareness of environmental impact grows, responsible handling and disposal of Diphenyl Ether become increasingly important.
Diphenyl Ether, CAS 101-84-8, EMD Millipore, organic compound, solvent, safety considerations, environmental impact, distribution, chemical properties, applications