Product Name: High Quality Methyl Thioglycolate CAS 2365-48-2 With Low Price
CAS Number: 2365 - 48 - 2
Appearance: Usually a clear to slightly yellowish liquid.
Molecular Formula: C₃H₆O₂S
Molecular Weight: Approximately 106.14 g/mol
Boiling Point: Around 132 - 135°C at 760 mmHg
Density: About 1.166 g/mL at 25°C
Flash Point: 32°C
Solubility: It is soluble in most organic solvents and slightly soluble in water.
Methyl Thioglycolate has a wide range of applications in different industries:
It is a key ingredient in hair removal products. Due to its ability to break the disulfide bonds in hair keratin, it can effectively dissolve hair, allowing for smooth and pain - free hair removal.
In leather processing, Methyl Thioglycolate is used for dehairing hides. It helps in removing the hair from the animal skins gently and efficiently, improving the quality of the leather.
It serves as an important intermediate in the synthesis of various organic compounds. For example, it can be used to synthesize thioesters and other sulfur - containing organic molecules.
When formulating hair removal creams or lotions, Methyl Thioglycolate should be added in an appropriate concentration, usually ranging from 2% - 10%. First, dissolve the Methyl Thioglycolate in a suitable solvent such as propylene glycol or water. Then, add other ingredients like thickeners, emulsifiers, and fragrance. Stir the mixture thoroughly until it is homogeneous. Apply the product to the skin, leave it on for the recommended time (usually 5 - 10 minutes), and then remove the hair with a spatula or soft cloth.
Prepare a solution of Methyl Thioglycolate with a concentration of 1% - 3%. Immerse the hides in the solution for a certain period (usually 12 - 24 hours) depending on the type and thickness of the hides. During the immersion process, the solution should be stirred regularly to ensure uniform dehairing. After dehairing, rinse the hides thoroughly with water to remove the residual solution.
Follow the specific reaction procedures in organic synthesis. Usually, Methyl Thioglycolate is added drop - wise to the reaction mixture under controlled temperature and pressure conditions. Use appropriate catalysts and solvents as required by the reaction mechanism. After the reaction is complete, purify the product through distillation, crystallization, or other separation methods.
A well - known cosmetics company developed a new hair removal lotion using Methyl Thioglycolate. They first conducted market research to determine the desired product features such as fast - acting, gentle on the skin, and long - lasting hair removal. After formulating the product with an optimized concentration of Methyl Thioglycolate, they conducted a series of clinical trials on a group of volunteers. The results showed that 90% of the volunteers reported smooth and pain - free hair removal, and 80% of them noticed a significant reduction in hair regrowth within a week. The product was then launched in the market and quickly gained popularity due to its excellent performance.
A leather processing factory switched from the traditional lime - sulfide dehairing method to using Methyl Thioglycolate. They prepared a Methyl Thioglycolate - based dehairing solution and treated a batch of cowhides.
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