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CAS107-30-2: A In-depth Analysis into Its Characteristics

CAS107-30-2, also known as 2,9-di-tert-butyl-1,10-phenanthroline N,N'-dioxide, presents a unique combination of physical properties. It’s a fluid at room conditions, typically appearing as a clear compound. Its molecular weight is approximately 150.22 g/mol, and it exhibits a substantial solubility in apolar media. Key properties include its significant oxidizing capabilities, making it a valuable reagent in various chemical reactions, particularly in oxidation processes. Moreover, it’s slightly stable under usual storage situations, although it should be handled with care due to its potential reactivity. Therefore, understanding these features is essential for responsible and effective implementation.

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Understanding CAS107-30-2: Applications and Uses

This chemical compound, identified through CAS number 107-30-2, more generally known by 3,3'-Oxydipropionyl Dimethylamine, exhibits a variety of important applications and uses within several industries. It's primary function resides as a corrosion inhibitor, especially in industrial treatment systems and metalworking fluids. Additionally, it substance functions as a buffering agent, aiding to keep a certain pH point in various formulations.

  • Employed in hydraulic water systems to inhibit rusting.
  • Acts as a fluid additive to boost efficiency.
  • Helps in certain production of specialty chemicals.

Therefore, understanding the properties and potential of CAS107-30-2 is crucial for specialists and developers operating in related fields. This substance presents a useful resource for improving process output and safeguarding important equipment.

CAS107-30-2: Safety Aspects and Handling

Careful handling of CAS107-30-2, also known as ethyl cyclohexyl carboxylate, requires strict observation to safety guidelines . This chemical presents possible hazards , including dermal reaction and visual injury . Consistently wear appropriate individual protective equipment , such as gloves , safety goggles , and a research apron. Confirm adequate ventilation when working with such substance to get more info lessen breathing contact . Consult the safety data sheet (SDS) for complete data on initial assistance measures and urgent response protocols .

The Chemistry Behind CAS107-30-2

Examining into the chemistry reveals a intricate structure . Chemically designated as 4-(4-hydroxyphenyl)-2-methylbut-3-en-2-ol, its molecule features a phenyl ring substituted with a hydroxybenzene group and a methylbutenol moiety. The unique configuration leads to distinct chemical properties , including its capacity to participate in various organic reactions. Further analysis indicates the existence of hydroxyl bonding, affecting the miscibility and overall integrity .

CAS107-30-2: Synthesis and Manufacturing Processes

The common production route for CAS107-30-2, also by DiethylAminoEthylAdipate, involves some combination with 2-EthylAminoEthanol and AdipicAcid or their derivatives. Fabrication processes might involve semi-batch vessels operating in controlled values with catalytic environments. Refinement typically incorporates separation or filtration procedures to achieve the grade of product. Other synthetic approaches could employ alternative initial materials or utilize novel processes.

Investigating the Scope of CAS107-30-2 in Scientific Study

Novel analysis are rapidly focusing attention towards this chemical entity and its anticipated applications within various scientific areas. Initial findings suggest a interesting capability in areas such as drug development, substance study, and cellular actions. Additional study is required to completely determine the intricate procedures involved and to realize its full scientific value. Particularly, scientists are investigating its interaction with living targets and evaluating its potency in various cell and animal systems.

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