Pentitol 2 5 Anhydro 1 3 4 Trideoxy 2 C 2 4 Difluorophenyl 4 Hydroxymethyl 1 1h 1 2 4 Triazol 1 Yl
Fluorine Difluoride Fluorobenzene Fluorobenzyl Trifluorotoluene
Pentitol, 2,5-anhydro-1,3,4-trideoxy-2-C-(2,4-difluorophenyl)-4-(hydroxymethyl)-1-(1H-1,2,4-triazol-1-yl)-
Chemical Formula C15H15F2N3O3
Molecular Weight 323.296 g/mol
Iupac Name 2,5 - anhydro - 1,3,4 - trideoxy - 2 - C - (2,4 - difluorophenyl)-4-(hydroxymethyl)-1-(1H - 1,2,4 - triazol - 1 - yl)pentitol
Appearance Unknown
Boiling Point Unknown
Melting Point Unknown
Solubility Unknown
Density Unknown
Pka Unknown
Logp Unknown
Chemical Formula C14H14F2N3O3
Molecular Weight 311.28
Chemical Formula C14H15F2N3O3
Molecular Weight 311.286 g/mol
Iupac Name 2,5-anhydro-1,3,4-trideoxy-2-C-(2,4-difluorophenyl)-4-(hydroxymethyl)-1-(1H-1,2,4-triazol-1-yl)pentitol
Chemical Formula C14H14F2N3O3
Molecular Weight 311.28 g/mol
Chemical Formula C14H16F2N3O3
Molecular Weight 313.29
Iupac Name 2,5 - anhydro - 1,3,4 - trideoxy - 2 - C - (2,4 - difluorophenyl)-4-(hydroxymethyl)-1-(1H - 1,2,4 - triazol - 1 - yl)pentitol
Appearance Unknown
Melting Point Unknown
Boiling Point Unknown
Solubility Unknown
Density Unknown
Pka Unknown
Logp Unknown
FAQ

The product 2,5 - dehydration - 1,3,4 - trideoxy - 2 - C - (2,4 - difluorophenyl) - 4 - (hydroxymethyl) - 1 - (1H - 1,2,4 - triazole - 1 - yl) pentanol What is the main use of

This drug is called 2,5-dimethyl-1,3,4-trithiocyclopentadiene-2-keto- (2,4-diethylphenyl) -4- (benzyl) -1- (1H-1,2,4-triazole-1-yl) glycoside hydrazine. Its main use is not directly recorded in ancient books such as Tiangong Kaiwu, but it is inferred from modern pharmaceutical knowledge.

In the field of medicine, such compounds containing specific heterocyclic structures and functional groups may have antibacterial effects. Because of its structure, trithiocyclopentadiene, triazolyl and other parts, can interfere with bacterial cell wall, cell membrane synthesis and metabolism, such as some triazole-containing structural drugs can inhibit fungal ergosterol synthesis, destroy the integrity of fungal cell membranes and cause their death, so the compound may have inhibitory and killing effects on specific bacteria, fungi and other pathogens, and is used in the treatment of infectious diseases.

In agriculture, it may be used as a plant growth regulator. Organic groups such as benzyl and ethylphenyl in the structure may affect plant hormone balance and signal transduction. For example, some phenyl-containing compounds can regulate plant cell elongation and division. The compound may promote crop growth and development, improve yield and quality, and may also enhance plant stress resistance and help plants resist drought, high temperature, diseases and insect pests and other adverse environments.

In the chemical industry, its unique structure makes it a key monomer for the synthesis of new polymer materials. By polymerizing with other monomers, materials with special properties are formed. For example, by introducing the compound structural unit into the material, the material is endowed with antibacterial, antioxidant and other properties, and the application range of the material is expanded. It is used in food packaging, medical and health care and other fields that require high material properties.

The product 2,5 - dehydrated - 1,3,4 - trideoxy - 2 - C - (2,4 - difluorophenyl) - 4 - (hydroxymethyl) - 1 - (1H - 1,2,4 - triazole - 1 - yl) pentanol What is the synthesis method of

To prepare this 2,5 - hair loss - 1,3,4 - trihydroxy - 2 - C - (2,4 - diethylphenyl) - 4 - (methoxy) - 1 - (1H - 1,2,4 - triazole - 1 - yl) glycoside ester, the method is as follows:

Take an appropriate amount of starting materials and prepare them carefully. According to the ancient rules, the operation needs to be careful, and the materials should be put into the clean utensils in the appropriate proportion in sequence.

First, specific reaction conditions are used to make the relevant groups interact. In the meantime, temperature control is crucial, and it should be maintained within a certain precise range. If it is too high, it is easy to cause side reactions, and if it is too low, the reaction will be slow and difficult.

After the initial reaction is completed, the product needs to be carefully separated and purified to remove impurities to ensure the purity of the product. Then, new reactants are added, and the reaction environment is adjusted to make it further react, so as to add the required groups, such as the introduction of 2,4-diethylphenyl, methoxy and other groups.

After each step of the reaction, the product needs to be carefully checked to see if its structure and purity are as expected. In this way, after repeated reactions, separation and purification processes, the 2,5-alopecia-1,3,4-trihydroxy-2-C- (2,4-diethylphenyl) -4- (methoxy) -1- (1H-1,2,4-triazole-1-yl) glycoside ester is finally obtained. The whole process depends on the experience and focus of the operator. A slight difference may cause the product to fail to meet expectations.

The product 2,5 - dehydrated - 1,3,4 - trideoxy - 2 - C - (2,4 - difluorophenyl) - 4 - (hydroxymethyl) - 1 - (1H - 1,2,4 - triazole - 1 - yl) How is the stability of pentanol

This compound contains 2,5-naphthol, 1,3,4-trihydroxy-2- (2,4-diethylphenyl) -4- (benzyl) -1- (1H-1,2,4-triazole-1-yl) glycoside fragments. Its stability is related to many factors.

From the structural theory, the 2,5-naphthol part, the naphthalene ring has a conjugated system, which provides a certain stability. However, the phenolic hydroxyl group has high activity and is easily oxidized, exposed to oxidants or light, or causes structural changes. In the structure of

1,3,4-trihydroxy, the hydroxyl groups easily form hydrogen bonds or enhance intermolecular forces, which has a positive effect on stability. However, the hydroxyl group is also an active check point and can participate in a variety of reactions, such as esterification and etherification, which affect stability.

2 - (2,4-diethylphenyl) and 4 - (benzyl) parts, alkyl groups are connected to aryl groups, which enhance molecular hydrophobicity. The stable structure of the aryl conjugate system, the alkyl electron supply effect, has an impact on the electron cloud distribution of nearby groups, or changes the activity and stability. < Br >
1 - (1H - 1,2,4 - triazole - 1 - base) structure, triazole ring has certain aromatic and stability. However, the nitrogen atom on the ring has a lone pair electron, which can be used as a nucleophilic check point and react with electrophilic reagents, which affects the overall stability.

Glycosidic bonds connect each part, and its stability is related to the environment. Under acidic or basic conditions, glycosidic bonds or hydrolysis break, resulting in structural damage of the compound.

In summary, the stability of this compound is complex. Under different environments and conditions, the structures of each part affect each other, and various factors work together to determine its stability.

How competitive is the product 2,5 - dehydrated - 1,3,4 - trideoxy - 2 - C - (2,4 - difluorophenyl) - 4 - (hydroxymethyl) - 1 - (1H - 1,2,4 - triazole - 1 - yl) pentanol in the market?

Looking at this product, it is called 2,5-naphthol-1,3,4-trihydroxy-2- (2,4-diethylphenyl) -4- (benzyl) -1- (1H-1,2,4-triazole-1-yl) glycoside ester. To know its competitiveness in the market, many factors need to be looked at.

First, it is related to its own characteristics. This product has a unique structure, and the combination of 2,5-naphthol, trihydroxy and various groups may endow it with different chemical properties and functions. If it can demonstrate unique advantages in a specific field, such as unique pharmacological activity in the field of medicine, or specific properties in the field of materials, it will definitely enhance its competitiveness. However, if its properties are not significantly specific and it is easy to be replaced by other things, the competitiveness will be worrisome.

Second, it depends on market supply and demand. If the market demand for this product is strong and the supply is limited, just like the rain in a drought, its competitiveness will increase. On the contrary, if the market demand for this is very low, or there are already many similar alternatives flooded, the supply exceeds the demand, it may be difficult to have a foothold in the market.

Third, look at the competitive situation. If the product is of the same type, it is outstanding in quality, exquisite in production technology, and cost-controllable, it will naturally be more competitive. On the contrary, if the quality is mediocre, the production efficiency is low, and the cost is high, it will be difficult to cope with competing products.

Fourth, policies and the environment also have an impact. If the industry's policies are supported and environmental protection requirements are adapted, its development will be beneficial and its competitiveness will be enhanced. On the contrary, if there are many policy restrictions and environmental pressure is huge, it will add to its development and weaken its competitiveness.

The competitiveness of this product in the market is like a complex chess game. It is necessary to comprehensively consider various factors such as its own characteristics, market supply and demand, competition situation and policy environment in order to understand its rise and fall in the market.

This product 2,5 - Dehydration - 1,3,4 - Trideoxy - 2 - C - (2,4 - Difluorophenyl) - 4 - (Hydroxymethyl) - 1 - (1H - 1,2,4 - Triazole - 1 - yl) pentanol What are the manufacturers of

Today there is a product, its name is "2,5 - lubricating oil - 1,3,4 - trioleic acid - 2 - C - (2,4 - diethylphenyl) - 4 - (methoxy) - 1 - (1H - 1,2,4 - triazole - 1 - yl) glycoside ester", who produced this product?

Looking at the name of this compound, the structure is complex and unusual. Looking for its producer is like looking for a drop in the vast sea. However, in the chemical and pharmaceutical industries of the world, there may be workshops that are involved in such fine chemicals.

In the field of chemical industry, there are those who are good at making various oils and additives, or who can study the synthesis of these substances. They use chemical techniques to manipulate various raw materials, go through various processes of reaction and purification, or can produce this substance.

In the field of pharmaceuticals, because the research and development of drugs often requires unique chemical substances, or there is a demand for this substance, and then put effort into the production. In the laboratory, it is repeatedly tested and optimized, and strives to produce pure and high-quality products.

Or there may be institutions specializing in organic synthesis to explore new compounds as a service, and this unique structure may also be put into research and production. They use innovative thinking and cutting-edge technology to make continuous progress in organic synthesis, or contribute to the production of this product.

Although it is difficult to identify the specific producer, there must be many parties involved in the study of this product in the fields of chemical, pharmaceutical and organic synthesis. If you want to know more, you need to explore the internal ads in the industry, visit various schools, read classics, or get the truth.