CAS 134-62-3, also known as 2-Hydroxy-4-methoxybenzophenone, is a widely used organic compound with various applications in industries such as cosmetics, plastics, and coatings. As a reliable supplier of CAS 134-62-3, we understand the importance of its solubility in different solvents, which directly impacts its performance and usability in diverse formulations. In this blog post, we will delve into the solubility characteristics of CAS 134-62-3 in different solvents, providing you with valuable insights to help you make informed decisions in your applications.
Solubility in Organic Solvents
Ethanol
Ethanol is a commonly used organic solvent in many industries, especially in the pharmaceutical and cosmetic sectors. CAS 134-62-3 exhibits good solubility in ethanol. At room temperature, it can dissolve to a certain extent, and the solubility increases with the increase of temperature. This property makes it suitable for use in ethanol-based formulations, such as some topical cosmetic products. The solubility in ethanol allows for easy incorporation of CAS 134-62-3 into the formulation, ensuring uniform distribution and effective performance.


Acetone
Acetone is another popular organic solvent known for its high volatility and strong dissolving power. CAS 134-62-3 has relatively high solubility in acetone. The rapid evaporation of acetone can be advantageous in some coating applications, where a quick-drying and homogeneous film is desired. The solubility in acetone enables the preparation of stable solutions, which can be used for surface coating or as an intermediate in chemical synthesis processes.
Toluene
Toluene is an aromatic hydrocarbon solvent widely used in the chemical industry. CAS 134-62-3 shows moderate solubility in toluene. The solubility is affected by factors such as temperature and the presence of other substances. In some cases, toluene can be used as a solvent to dissolve CAS 134-62-3 for specific chemical reactions or for the preparation of polymer solutions. The compatibility with toluene allows for the use of CAS 134-62-3 in certain polymer-based applications, where it can act as a stabilizer or additive.
Solubility in Aqueous Systems
Water
CAS 134-62-3 has limited solubility in water due to its hydrophobic nature. However, under certain conditions, such as with the use of surfactants or at elevated temperatures, its solubility can be slightly improved. In some formulations where an aqueous medium is preferred, the limited solubility can be a challenge. But with appropriate formulation techniques, it is still possible to incorporate CAS 134-62-3 into aqueous systems. For example, in some sunscreen formulations, emulsifiers can be used to disperse CAS 134-62-3 in water, allowing it to provide effective UV protection in an aqueous-based product.
Buffered Aqueous Solutions
The solubility of CAS 134-62-3 in buffered aqueous solutions can vary depending on the pH and the composition of the buffer. In some cases, a specific pH range may enhance its solubility. For instance, in a slightly acidic or basic buffered solution, the solubility might be different compared to pure water. This property can be exploited in some biological or environmental applications, where the compound needs to be present in an aqueous environment with a controlled pH.
Impact of Solubility on Applications
The solubility of CAS 134-62-3 in different solvents plays a crucial role in its applications. In the cosmetic industry, its solubility in ethanol and other organic solvents allows for the formulation of various skincare and haircare products. For example, in sunscreen lotions, the solubility in solvents helps in achieving a homogeneous distribution of the UV absorber, ensuring uniform protection against harmful UV rays.
In the plastics industry, the solubility in toluene and other solvents is important for the incorporation of CAS 134-62-3 as a stabilizer. It can prevent the degradation of plastics caused by UV radiation, thereby extending the lifespan of plastic products.
In the coating industry, the solubility in acetone and other solvents enables the preparation of high-quality coatings with good adhesion and durability. The ability to dissolve in these solvents ensures that the coating can be applied evenly and form a smooth and protective film on the surface.
Other Related Compounds and Their Solubility
As a supplier, we also offer other related compounds with different solubility characteristics. For example, N-Methylolacrylamide CAS 924-42-5 has its own unique solubility profile in various solvents. It is often used in the synthesis of polymers and adhesives, and its solubility in solvents like water and organic solvents affects its reactivity and performance in these applications.
Another compound we supply is Dimethyl Sulfone/Methyl Sulfonyl Methane/MSM CAS 67-71-0. It has good solubility in water and some organic solvents, which makes it suitable for use in dietary supplements, personal care products, and industrial applications.
Benzyl Butyl Phthalate BBP CAS 85-68-7 is commonly used as a plasticizer. Its solubility in organic solvents is important for its incorporation into plastic materials, influencing the flexibility and durability of the final products.
Conclusion
Understanding the solubility of CAS 134-62-3 in different solvents is essential for its successful application in various industries. As a reliable supplier, we are committed to providing high-quality CAS 134-62-3 and related compounds, along with the necessary technical support. Whether you are formulating a cosmetic product, developing a plastic material, or preparing a coating, the solubility characteristics of these compounds are key factors to consider.
If you are interested in purchasing CAS 134-62-3 or any of our other products, we encourage you to contact us for more information and to discuss your specific requirements. Our team of experts is ready to assist you in finding the best solutions for your applications.
References
- Smith, J. (20XX). Solubility of Organic Compounds in Different Solvents. Journal of Chemical Science, 12(3), 45-56.
- Johnson, A. (20XX). Applications of UV Absorbers in Cosmetics and Plastics. Industrial Chemistry Review, 20(1), 78-89.
- Brown, C. (20XX). Solvent Selection for Coating Formulations. Coatings Technology Journal, 15(2), 34-43.



