Trans Trans 1 4 Ethylbicyclohexyl 3 4 5 Trifluorobenzene
Fluorine Difluoride Fluorobenzene Fluorobenzyl Trifluorotoluene
Trans ,trans-1-(4'-ethylbicyclohexyl)-3,4,5-trifluorobenzene
Chemical Formula C16H19F3
Molecular Weight 270.32
Appearance Typically a liquid (but state can depend on conditions)
Boiling Point Data might vary based on purity and pressure, generally in a specific range for this type of compound
Melting Point Characteristic value related to its solid - liquid phase transition, specific to this compound
Density Determined value in g/cm³ at a standard temperature
Solubility In Common Solvents Varies in different solvents like hydrocarbons, polar solvents etc.
Refractive Index A characteristic optical property value
Vapor Pressure Value dependent on temperature, shows volatility
Stability Regarding its chemical stability under different conditions
Chemical Formula C16H19F3
Molecular Weight 270.316
Appearance Typically a clear liquid (common for liquid crystal compounds)
Polarity The presence of fluorine atoms contributes to some polarity
Stability Should be relatively stable under normal conditions for liquid crystal applications, but sensitive to extreme conditions
Chemical Formula C16H19F3
Molecular Weight 270.32
Appearance Typically a liquid (needs verification based on phase - transition temperatures)
Solubility In Organic Solvents Likely soluble in common organic solvents like toluene, hexane etc. (due to its non - polar nature)
FAQ

What is the main use of this product (Trans, trans-1- (4 '-ethylbicyclohexyl) -3,4,5-trifluorobenzene)?

The main use of this substance (trans-1- (4 '-ethyldicyclohexyl) -3,4,5-trifluorobenzene) is particularly important. In the field of materials science, it is often used as a key component of liquid crystal materials. Liquid crystal materials play a pivotal role in modern display technology, such as common liquid crystal displays (LCDs). Due to its unique molecular structure, this substance imparts specific physical properties to liquid crystal materials, such as suitable phase transition temperature and good optical anisotropy, which can effectively regulate the arrangement and orientation of liquid crystal molecules, so that LCDs can display clear images.

In the field of organic synthetic chemistry, this substance is also an important intermediate. With its unique chemical structure, chemists can modify and derivatize it through various chemical reactions, thereby preparing organic compounds with different functions and characteristics, expanding the boundaries of organic synthesis, and providing diverse possibilities for the research and development of new materials. At the same time, when studying new organic functional materials, it serves as a basic structural unit for scientists to deeply explore the relationship between molecular structure and properties, laying a theoretical and practical foundation for the design of more advanced materials.

What is the production process of Trans-1- (4 '-ethylbicyclohexyl) -3,4,5-trifluorobenzene?

The process of making trans, trans-1- (4 '-ethyldicyclohexyl) -3,4,5-trifluorobenzene is quite exquisite. The first raw materials are 4-ethyldicyclohexyl bromide and 3,4,5-trifluorophenylboronic acid, both of which need pure products to ensure a smooth reaction.

As for the reaction step, the method of palladium catalytic coupling is carried out. In a clean reactor, add an appropriate amount of palladium catalyst, add a ligand, and add alkali solution, such as potassium carbonate aqueous solution, to create an alkaline environment for the reaction. Then, slowly pour in the mixture of 4-ethyldicyclohexyl bromide and 3,4,5-trifluorophenylboronic acid, and remove oxygen through nitrogen to prevent impurity interference.

Heat up to a suitable temperature, about 100 ° C, to maintain this temperature, so that the reaction is sufficient. In the meantime, close observation is required to monitor the reaction process. After the reaction is completed, the reaction liquid is cooled, poured into the separation funnel, and extracted with an organic solvent, such as dichloromethane, to separate the organic phase.

The organic phase is dried with anhydrous sodium sulfate to remove the moisture in it. After that, the solvent is evaporated to obtain the crude product. Then, the column chromatography method is used to refine it, and a suitable mixture of silica gel and eluent, such as petroleum ether and ethyl acetate, is selected. The proportion depends on the situation. After this step, high purity trans, trans - 1 - (4 '-ethyldicyclohexyl) - 3,4,5 - trifluorobenzene can be obtained for subsequent use.

What is the market price range for Trans, trans-1- (4 '-ethylbicyclohexyl) -3,4,5-trifluorobenzene?

I don't know the market price range of "Trans, trans -1- (4 '-ethylbicyclohexyl) -3,4,5 -trifluorobenzene". However, if you want to know its price, you can explore it from many parties.

First, on the chemical product trading platform, such platforms often collect a lot of chemical product buying and selling information, and many merchants list their quotations. Check the price range in detail.

Second, consult chemical raw material suppliers. They specialize in the supply of chemical products, are familiar with the price of various products, or can tell the exact price range according to their own operations and market conditions.

Third, participate in chemical industry exhibitions and seminars. On these occasions, you can communicate with industry insiders to know market dynamics and price trends.

Fourth, analyze the market survey report. Professional research institutions often issue chemical product market reports, including price analysis, supply and demand trends, etc., to help understand their price range.

However, the price often changes due to quality, purity, purchase volume, market supply and demand, regional differences, etc. High-quality, high-purity prices may be high; bulk purchases may have discounts; market supply exceeds demand prices tend to rise, and oversupply decreases; different regions have different prices due to transportation costs, market competition, etc. Therefore, in order to know the exact price, it is advisable to explore in detail through the above channels according to actual procurement needs.

What are the advantages of Trans-1- (4 '-ethylbicyclohexyl) -3,4,5-trifluorobenzene over congeneric products?

The compound trans, trans-1- (4 '-ethyldicyclohexyl) -3,4,5-trifluorobenzene does have many advantages over congeneric products.

First, its phase transition temperature is quite suitable. In congeneric products, either the phase transition temperature is too high, resulting in a significant increase in energy consumption; or it is too low, making it difficult to operate stably under normal operating conditions. The phase transition temperature of this compound is moderate, and it can maintain a good liquid crystal phase state in various application scenarios, ensuring a stable and clear display effect.

Second, its chemical stability is very good. Some of the same products are prone to chemical reactions in specific chemical environments, resulting in performance deterioration. However, trans, trans-1- (4 '-ethyldicyclohexyl) -3,4,5-trifluorobenzene can resist the erosion of a variety of chemical substances, and can also maintain its inherent characteristics for a long time in complex chemical environments, thereby prolonging the service life of the product.

Third, its solubility is unique. In common organic solvents, the compound exhibits good solubility, which makes it easier to mix evenly with other materials during the production process, which helps to improve the accuracy and efficiency of the product manufacturing process and can better meet the needs of industrial large-scale production.

Fourth, it is environmentally friendly. congeneric products, some of which will have a certain negative impact on the environment during production and use. In the process of synthesis and application, this compound produces relatively few pollutants, which is in line with the current development trend of green environmental protection and in line with the concept of sustainable development.

In summary, trans-1- (4 '-ethyldicyclohexyl) -3,4,5-trifluorobenzene has significant advantages over congeneric products in terms of phase transition temperature, chemical stability, solubility and environmental friendliness.

What are the Quality Standards for Trans-1- (4 '-ethylbicyclohexyl) -3,4,5-trifluorobenzene?

Fu trans, trans - 1 - (4 '-ethyldicyclohexyl) - 3,4,5 -trifluorobenzene, organic compounds are also. The Quality Standards involved are crucial in industrial production and application.

Looking at the ancient books, the Quality Standards of such compounds are the first purity. High purity is suitable for many precision fields. Generally speaking, its purity needs to reach a very high level to ensure the stability of its properties. The content of impurities must be strictly controlled, and trace impurities or major changes in properties are especially important in electronics, medicine and other industries.

Secondly, it is related to its physical properties. The values of melting point and boiling point must be accurate. These two can test the purity of their purity and are also the basis for setting conditions during production and application. If the melting point deviates from the established range, it may indicate that impurities are mixed in, which will affect its overall quality.

Furthermore, chemical stability is also an important item of Quality Standards. The compound should have good stability in different environments and should not easily react with foreign objects. Otherwise, during storage and use, it may change and damage its efficacy.

In addition, appearance characteristics such as color and smell cannot be ignored. Pure trans, trans - 1 - (4 '-ethyldicyclohexyl) - 3,4,5 - trifluorobenzene, when it has a specific color and taste, if there is any abnormality, or it suggests that the quality is deficient.

In summary, its Quality Standard covers various elements such as purity, physical properties, chemical stability and appearance characteristics. Each element complements each other to ensure the excellent quality of the compound to meet the needs of various industries.