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Jul 14, 2025

What is the boiling point of the compound with CAS 134-62-3?

The compound with CAS 134-62-3 is 2,4,6-Trichlorophenol. In this blog, we'll explore its boiling point and related aspects, and as a reliable supplier of this compound, I'm here to provide you with in - depth information.

Sulfolane Tetramethylene Sulfone CAS 126-33-0 low priceButyltin Trichloride CAS 1118-46-3

Physical Properties and Boiling Point

2,4,6 - Trichlorophenol is a well - known organic compound. Its physical properties play a crucial role in various industrial and chemical applications. The boiling point of 2,4,6 - Trichlorophenol is approximately 246 - 248 °C at normal atmospheric pressure (760 mmHg). This relatively high boiling point is a result of several factors related to its molecular structure and intermolecular forces.

The molecule of 2,4,6 - Trichlorophenol consists of a phenol ring with three chlorine atoms attached at the 2nd, 4th, and 6th positions. The presence of these chlorine atoms increases the molecular weight of the compound. Higher molecular weight generally leads to stronger van der Waals forces between molecules. Additionally, the hydroxyl group (-OH) on the phenol ring can form hydrogen bonds. Hydrogen bonding is a relatively strong intermolecular force that requires a significant amount of energy to break. As a result, more heat is needed to convert the liquid 2,4,6 - Trichlorophenol into vapor, which explains its relatively high boiling point.

Applications in Different Industries

Due to its unique properties, 2,4,6 - Trichlorophenol has a wide range of applications in different industries.

In the agricultural industry, it has been used as a fungicide and bactericide. Its ability to inhibit the growth of fungi and bacteria makes it useful for protecting crops from various diseases. The relatively high boiling point ensures that it remains stable under normal agricultural application conditions, allowing it to provide long - term protection.

In the chemical industry, 2,4,6 - Trichlorophenol serves as an intermediate for the synthesis of other organic compounds. It can participate in various chemical reactions, such as substitution reactions and condensation reactions, to produce more complex molecules. The boiling point of 2,4,6 - Trichlorophenol is an important consideration during these synthesis processes. For example, in distillation steps, the boiling point helps in separating it from other reaction products and impurities.

Comparison with Other Compounds

To better understand the boiling point of 2,4,6 - Trichlorophenol, it's helpful to compare it with other related compounds.

Let's take a look at N - Octyltriethoxysilane/Triethoxy(octyl)silane CAS 2943 - 75 - 1. This compound has a boiling point of around 220 - 222 °C. The lower boiling point compared to 2,4,6 - Trichlorophenol can be attributed to its different molecular structure. N - Octyltriethoxysilane contains a silicon atom and long - chain alkyl groups. Although it has van der Waals forces, the absence of hydrogen bonding like in 2,4,6 - Trichlorophenol results in weaker intermolecular forces overall, thus requiring less energy to vaporize.

Another compound is Butyltin Trichloride CAS 1118 - 46 - 3. It has a boiling point of approximately 170 - 172 °C. The tin - containing structure and the relatively smaller molecular size compared to 2,4,6 - Trichlorophenol lead to weaker intermolecular forces. The lack of strong hydrogen - bonding and the nature of the tin - carbon and tin - chlorine bonds contribute to its lower boiling point.

Su lfolane Tetramethylene Sulfone CAS 126 - 33 - 0 has a boiling point of about 285 °C. Sulfolane has a highly polar structure with a sulfone group. The strong dipole - dipole interactions and the ring structure contribute to its high boiling point. Compared to 2,4,6 - Trichlorophenol, although both have relatively high boiling points, the different types of intermolecular forces and molecular structures result in different boiling point values.

Our Supply and Quality Assurance

As a supplier of 2,4,6 - Trichlorophenol, we are committed to providing high - quality products. Our manufacturing process adheres to strict quality control standards. We ensure that the boiling point of our 2,4,6 - Trichlorophenol product falls within the standard range of 246 - 248 °C.

We have a professional R & D team that continuously monitors and improves our production process. Through advanced analytical techniques, we can accurately measure the boiling point and other physical and chemical properties of our products. This allows us to guarantee the consistency and quality of each batch of 2,4,6 - Trichlorophenol we supply.

Environmental and Safety Considerations

It's important to note that 2,4,6 - Trichlorophenol has certain environmental and safety risks. It is toxic to aquatic organisms and can cause long - term adverse effects in the aquatic environment. When handling and using 2,4,6 - Trichlorophenol, proper safety measures should be taken. Workers should wear appropriate protective equipment, such as gloves and goggles, to avoid direct contact. In addition, waste disposal should follow relevant environmental regulations to minimize its impact on the environment.

Conclusion

In conclusion, the boiling point of 2,4,6 - Trichlorophenol (CAS 134 - 62 - 3) is approximately 246 - 248 °C, which is determined by its molecular structure and intermolecular forces. This property is crucial for its applications in different industries. As a reliable supplier, we offer high - quality 2,4,6 - Trichlorophenol with strict quality control.

If you are interested in purchasing 2,4,6 - Trichlorophenol for your industrial or research needs, we welcome you to contact us for further discussions and procurement negotiations. We are ready to provide you with the best products and services.

References

  1. "The Handbook of Chemistry and Physics", CRC Press.
  2. "Organic Chemistry" textbooks, various editions.
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