1 1 Biphenyl 4 Difluoro 3 4 5 Trifluorophenoxy Methyl 3 5 Difluoro 4 Propyl
Fluorine Difluoride Fluorobenzene Fluorobenzyl Trifluorotoluene
1,1'-Biphenyl, 4-[difluoro(3,4,5-trifluorophenoxy)methyl]-3,5-difluoro-4'-propyl-
Chemical Formula C22H13F7O
Molecular Weight 438.32
Appearance Typically a solid
Melting Point Data may vary, specific value needed from detailed source
Boiling Point Data may vary, specific value needed from detailed source
Solubility In Water Low solubility, likely hydrophobic
Solubility In Organic Solvents Good solubility in many organic solvents like dichloromethane
Density Data may vary, specific value needed from detailed source
Vapor Pressure Low vapor pressure as a solid
Stability Stable under normal conditions, may react under extreme conditions
Chemical Formula C22H13F7O
Molecular Weight 432.32
Appearance Typically a solid (physical state may vary based on conditions)
Melting Point Specific value would require experimental determination
Solubility In Water Expected to be low (non - polar nature)
Solubility In Organic Solvents Likely soluble in common organic solvents like dichloromethane, toluene
Vapor Pressure Low due to its relatively large molecular size and non - volatile nature
Density Needs experimental measurement for accurate value
Stability Stable under normal conditions, but may react under extreme heat, light or in presence of strong reagents
Odor No general information available, likely odorless or with a very faint odor
Chemical Formula C22H13F7O
Molecular Weight 446.326 g/mol
Physical State Solid (likely, based on similar compounds)
Appearance Typically white - off - white powder (assumed from structural analogs)
Boiling Point Estimated high due to large molecular structure and intermolecular forces
Solubility In Water Low solubility (hydrophobic nature of biphenyl and fluorinated groups)
Solubility In Organic Solvents Soluble in non - polar or moderately polar organic solvents like toluene, dichloromethane
Vapor Pressure Low vapor pressure at room temperature
Density Estimated density based on similar fluorinated organic compounds
Chemical Name 1,1'-Biphenyl, 4-[difluoro(3,4,5-trifluorophenoxy)methyl]-3,5-difluoro-4'-propyl-
FAQ

What are the main application fields of 1,1 '-biphenyl, 4- [difluoro (3,4,5-trifluorophenoxy) methyl] -3,5-difluoro-4' -propyl -

1,1 '-Binaphthyl, 4- [diethyl (3,4,5-triethylnaphthoxy) ethyl] -3,5-diethyl-4' -propyl This compound has important applications in many fields such as medicinal chemistry, materials science and organic synthesis.

In the field of medicinal chemistry, due to its unique molecular structure, it can be used as a key intermediate for the synthesis of drug molecules with specific biological activities. With its structural modification and modification, new drugs for specific disease targets can be obtained, such as the development of anti-cancer and antiviral drugs, or the creation of drugs for the treatment of neurodegenerative diseases.

In the field of materials science, this compound can be used to prepare optoelectronic materials with excellent performance. Due to its special optical and electrical properties, it can be used in organic Light Emitting Diodes (OLEDs), solar cells and other optoelectronic devices to improve the luminous efficiency, stability and energy conversion efficiency of the device, and then promote the development of display technology and energy.

In the field of organic synthesis, 1,1 '-binaphthyl, 4- [diethyl (3,4,5-triethylnaphthoxy) ethyl] -3,5-diethyl-4' -propyl, as an important chiral ligand or synthesizer, can participate in many asymmetric synthesis reactions. With the help of its chiral induction, organic compounds with specific configurations can be efficiently and selectively synthesized, which is of great significance for drug synthesis, total synthesis of natural products, etc., and greatly enhances the accuracy and efficiency of organic synthesis.

What are the physical properties of 1,1 '-biphenyl, 4- [difluoro (3,4,5-trifluorophenoxy) methyl] -3,5-difluoro-4' -propyl -

1% 2C1% 27-binaphthyl, 4- [diethyl (3,4,5-triethylnaphthoxy) ethyl] -3,5-diethyl-4% 27-propyl This compound has unique physical properties.

From the perspective of this compound, it either has a specific form, or is crystalline, with a regular crystal form and a unique luster, reflecting the orderly arrangement of its internal structure. Its color is also bright, or it is colorless and transparent, or it has a light color, all of which are determined by its molecular structure and electronic transition characteristics.

When it comes to the melting point, the intermolecular force of this compound is specific, and the melting point is within a certain range. The regularity of the molecular structure and the strength of the interaction jointly determine the heat required for it to change from solid to liquid.

In terms of solubility, depending on the polarity and structure of the molecule, it may have different solubility in organic solvents. If the molecule has a certain polarity, it may have better solubility in polar organic solvents such as alcohols and ketones; if the non-polar part is dominant, it may have better solubility in non-polar solvents such as hydrocarbons.

In terms of density, due to the mass of the molecule and the way of packing, it shows corresponding values. Molecular structures that are tightly packed may have higher density; while loose structures have lower density. The physical properties of this compound are closely related to its molecular structure, and subtle differences in structure can lead to significant differences in physical properties.

What are the chemical properties of 1,1 '-biphenyl, 4- [difluoro (3,4,5-trifluorophenoxy) methyl] -3,5-difluoro-4' -propyl -

The chemical properties of 1% 2C1% 27-binaphthyl, 4- [diethyl (3% 2C4% 2C5-triethylnaphthoxy) ethyl] -3% 2C5-diethyl-4% 27-propyl are particularly complex, and this compound has a unique spatial structure and electronic properties.

Due to the existence of binaphthyl, the molecule has a helical configuration, which endows it with chiral characteristics. It may have important applications in the field of asymmetric synthesis. It can be used as a chiral ligand or catalyst to selectively synthesize compounds of specific configurations.

From the perspective of substituents, diethyl (3% 2C4% 2C5-triethylnaphthoxy) ethyl and propyl substitutions have a significant impact on their physical and chemical properties. In addition, the presence of ethoxy groups in the naphthoxy structure may affect the electron cloud distribution of the molecule and change its electron transfer properties and reactivity. In chemical reactions, these substituents may form reaction check points, participate in nucleophilic substitution, electrophilic substitution and other reactions, and can further derive a variety of compounds.

Furthermore, the interactions between various groups in the molecule, such as van der Waals force, hydrogen bonding, etc., also affect their stability and aggregate structure, or determine their crystalline form and stacking mode in the solid state, which in turn affects material properties.

What is the production process of 1,1 '-biphenyl, 4- [difluoro (3,4,5-trifluorophenoxy) methyl] -3,5-difluoro-4' -propyl -

1% 2C1% 27-binaphthalene, 4- [diethyl (3,4,5-triethylnaphthaloxy) ethyl] -3,5-diethyl-4% 27-propyl-The production process of this compound is an extremely delicate and complex process.

First of all, the raw materials need to be carefully prepared. For the binaphthalene part, it can be precisely synthesized through a specific naphthalene compound through clever condensation reaction and carefully controlled temperature, pressure and reaction time. When it comes to the construction of complex substituents such as 4- [diethyl (3,4,5-triethylnaphthoxy) ethyl] -3,5-diethyl-4% 27-propyl, it is necessary to take steps.

Taking the introduction of ethoxy as an example, it is necessary to select an appropriate halogenated ethane and a hydroxyl-containing naphthalene intermediate, and under the action of a suitable basic catalyst, a nucleophilic substitution reaction occurs in a specific organic solvent, so that the ethoxy group can be precisely connected to the target position. For the introduction of propyl, it is also necessary to select a suitable halogenated propane. Under suitable reaction conditions, the propyl group is successfully connected to the designated check point through similar nucleophilic substitution or other organic reaction strategies.

The whole process is like a fine chemical dance, and each step of the reaction requires strict control of the reaction conditions, such as the slight deviation of temperature, the precise allocation of the proportion of reactants, and the precise control of the reaction time. At the same time, after each step of the reaction, delicate separation and purification methods, such as column chromatography and recrystallization, are required to ensure the purity of the intermediate and lay a solid foundation for subsequent reactions, so that this complex compound can be prepared with high yield and purity.

What is the market outlook for 1,1 '-biphenyl, 4- [difluoro (3,4,5-trifluorophenoxy) methyl] -3,5-difluoro-4' -propyl -

1% 2C1% 27 - binaphthyl, 4- [diethyl (3,4,5 - triethylnaphthoxy) ethyl] -3,5 - diethyl - 4% 27 - propyl This thing is in today's market conditions, just like a mirage hidden in the fog, the real is difficult to distinguish, and the good and the bad are uncertain.

Observe the world's business affairs, the situation is changing, and it is unpredictable. This thing first appeared in the world, like a new core blooming in the bushes, everyone is looking at it, hoping that it can be unique in the city and shine. In the beginning, those who may have discerning eyes and pearls, seeing its potential ability, thought that they could spread their wings like Kunpeng and soar to 90,000 miles, so they threw themselves into it and wanted to take the lead.

However, the market is well-behaved and cannot be fully controlled by human beings. Although this thing is unique, after entering the market, the situation encountered is complicated. First, similar competing products are like forests, all eager to compete for the limited profit. All kinds of competing products use their own means, either by virtue of the low price, or by the wide publicity, or by the excellent quality, disturbing the market. In the meantime, this thing is like a boat going against the current. If you don't advance, you will retreat. Second, the needs of the city's people are changing rapidly, like clouds in the sky, erratic. The initial enthusiasm may have faded, and new hobbies have revived. Whether this thing can adapt to changes in time and meet the needs of the public remains to be seen. Third, decrees and regulations are also the reins of the market. If there is a change in a government order, or support, or constraints, it will have a great impact on its market conditions.

At this moment, this thing seems to be on a fork in the road in the city. The road ahead is full of thorns, or the willows are dark and bright, and it remains to be tested in time. The city people are waiting to see if it can break through the siege, gain a firm foothold in the city, and create a situation.