What is the chemical structure of (3E) -5- [ (4,6-dichloro-1,3,5-triazine-2-yl) amino] -4-oxo-3- [2- (2-sulfophenyl) hydrazone fork] -3,4-dihydronaphthalene-2,7-disulfonic acid
"Tiangong Kaiwu" is a masterpiece of ancient science and technology in our country. Today, classical Chinese answers your question.
(3E) has undergone a series of changes, and its structure is particularly complex. The first word (4,6-dioxy-1,3,5-triazine-2-yl) amino group, this group has a specific chemical activity and spatial configuration, which affects the properties of the whole. It seems to be a key node in the reaction, interacting with surrounding atoms or groups.
And 4-oxo-3- [2 - (2 - hydroxybenzyl) thiazole], this part of the structure is exquisite, thiazole ring is connected to hydroxybenzyl, giving the overall unique chemical properties. The combination of 2 - hydroxyl and benzyl may affect the hydrophilic and reactive activity of the molecule check point.
As for 3,4 - dioxanidine and 2,7 - dioxy acid, the structure also plays an important role in the whole chemical system. The oxygen generation at a specific position on the pyrimidine ring of 3,4 - dioxanidine determines its interaction mode with other molecules, or participates in the formation of hydrogen bonds. The carboxyl group structure of 2,7-dioxy acid makes it acidic, which can participate in acid-base reactions and affect the charge distribution and solubility of the whole molecule.
Overall, this complex chemical structure, the parts cooperate with each other to form an organic whole. The exquisite structure determines its unique chemical properties, and shows unique behaviors and characteristics in various chemical reactions and material transformations. The mystery of this structure remains to be explored in depth by future generations to understand its more chemical wonders, which can be used in chemical, pharmaceutical and other fields for the benefit of all people.
What are the physical properties of (3E) -5- [ (4,6-dichloro-1,3,5-triazine-2-yl) amino] -4-oxo-3- [2- (2-sulfophenyl) hydrazone fork] -3,4-dihydronaphthalene-2,7-disulfonic acid
There are five kinds of things in "3E", but it is necessary to first talk about the things involved in many names. (4,6-dioxy-1,3,5-triazine-2-yl) amino group, this is an important structure. In addition, 4-oxo-3- [2-thiophenyl) furan], as well as 3,4-dioxy-pyrimidine, 2,7-dithiophenic acid, etc., are the key components involved in "3E".
The color of "3E" may be pure or slightly overcolored, which is due to the interaction of various structures contained in it. The taste, if you smell it, has a faint odor, not a rich and strong smell, but a subtle and indistinguishable fragrance. The cover is because its various groups are intertwined with each other, and the smell is unique.
Looking at its texture, at room temperature, it is either crystalline or nearly powdery. Its crystal structure is regular and orderly, but it is slightly different in appearance due to the subtle chemical bonds between atoms and the forces between molecules.
In terms of its solubility, it can be moderately dissolved in some good organic solvents, such as alcohols and ethers. This is because there are both polar parts in the molecular structure, which can form hydrogen bonds and other interactions with solvents, and non-polar regions, which conform to some of the characteristics of solvents.
As for the melting point, it has been tested by many parties and is roughly in a certain temperature range. This temperature is not only affected by the intermolecular forces, such as van der Waals forces, hydrogen bonds, etc., but also related to the molecular spatial configuration. The stacking method of molecules affects the lattice energy, and then the melting point.
The physical properties of "3E" are determined by its microstructure. The atoms and groups are arranged and combined in a delicate order to have such uniqueness.
What is the application field of (3E) -5- [ (4,6-dichloro-1,3,5-triazine-2-yl) amino] -4-oxo-3- [2- (2-sulfophenyl) hydrazone fork] -3,4-dihydronaphthalene-2,7-disulfonic acid?
(3E) -5- [ (4,6-dioxy-1,3,5-triazine-2-yl) amino] -4-oxo-3- [2- (2-thiophenyl) urea] -3,4-dihydropyrimidine-2,7-dione, this compound has applications in medicine, pesticides and other fields.
In the field of medicine, it can be used as a pharmaceutical active ingredient. Because of its special chemical structure, or can interact with specific biological targets, regulate physiological processes. Like some drugs containing triazine and pyrimidine structures, it can act on enzymes, receptors, and treat cancer, inflammation and other diseases. This compound may also have similar potential and is expected to be developed into innovative drugs through further research.
In the field of pesticides, it may have insecticidal, bactericidal and herbicidal activities. For example, some pesticides containing thiyl and pyrimidine structures can interfere with the nervous system of pests and the metabolic process of pathogens, and achieve the purpose of control. The compound may have inhibitory and killing effects on specific pests and pathogens due to its structural characteristics. It has been developed as a new type of pesticide to help the prevention and control of agricultural pests and diseases.
Although this specific compound is not contained in "Tiangong Kaiwu", the idea of "exhaustive investigation experiment" is similar to the study of the application To study its application, many experiments are required, such as synthesis optimization to improve purity yield, testing biological activity to determine applicable fields, evaluating safety to ensure no adverse effects on the environment and organisms. With the spirit of scientific exploration of the ancients and modern scientific means, this compound can play a greater value in the fields of medicine and pesticides.
What are the synthesis methods of (3E) -5- [ (4,6-dichloro-1,3,5-triazine-2-yl) amino] -4-oxo-3- [2- (2-sulfophenyl) hydrazone fork] -3,4-dihydronaphthalene-2,7-disulfonic acid
To prepare (3E) -5 - [ (4,6 - dioxy - 1,3,5 - triazine - 2 - yl) amino] - 4 - oxo - 3 - [2 - (2 - hydroxybenzyl) furyl] - 3,4 - dihydroquinazoline - 2,7 - dione, the method is as follows:
First take an appropriate amount of raw materials, and combine the part containing (4,6 - dioxy - 1,3,5 - triazine - 2 - yl) amino group with the relevant intermediate under specific reaction conditions. This process requires attention to the reaction temperature, time and the proportion of reactants. If the temperature is too high or the time is too long, it may cause side reactions to occur and affect the purity of the product.
When preparing the 4-oxo part, a suitable oxidizing agent should be selected to precisely control the degree of oxidation reaction. Excessive oxidation will destroy the product, and insufficient oxidation will make it difficult to achieve the desired structure.
For the structure of 3- [2- (2-hydroxybenzyl) furan], when synthesizing 2- (2-hydroxybenzyl) furan, the reaction solvent and catalyst should be properly selected to ensure that the benzyl group is accurately introduced into the specific position of the furan.
After the synthesis of each part is complete, let them carry out condensation reaction under suitable conditions. In this step, the condensation agent should be carefully selected to adjust the pH and temperature of the reaction, and promote the smooth connection of each fragment to form the target product (3E) -5 - [ (4,6-dioxy-1,3,5-triazine-2-yl) amino] -4-oxo-3- [2-hydroxybenzyl) furan] -3,4-dihydroquinazoline-2,7-dione. Finally, the impurities are removed by separation and purification to obtain a pure product. The entire synthesis process is like craftsmanship, with each step interlocking and requiring fine control in order to achieve the target compound.
What is the market prospect of (3E) -5- [ (4,6-dichloro-1,3,5-triazine-2-yl) amino] -4-oxo-3- [2- (2-sulfophenyl) hydrazone fork] -3,4-dihydronaphthalene-2,7-disulfonic acid?
(3E) -5- [ (4,6-dioxy-1,3,5-triazine-2-yl) amino] -4-oxo-3- [2- (2-hydroxyphenyl) thiazole] -3,4-dihydropyrimidine-2,7-dione, what is the market prospect of this product? I should answer it with the text of "Tiangong Kaiwu".
Guanfu (3E) -5- [ (4,6-dioxo-1,3,5-triazine-2-yl) amino] -4-oxo-3- [2- (2-hydroxyphenyl) thiazole] -3,4-dihydropyrimidine-2,7-dione, which is one of the special compounds in the field of fine chemicals. In today's world, the chemical industry is booming, and the search for various specific compounds has not stopped.
This compound may have emerged in the field of medicine because of its unique molecular structure. Doctors are concerned with people's livelihood and health, and they are hungry for new compounds. It may be a key raw material for the creation of new drugs, helping to overcome difficult diseases. If it can make a difference, its market potential is limitless.
Furthermore, in the field of materials science, new compounds are often an opportunity to develop high-performance materials. ( 3E) -5- [ (4,6-dioxy-1,3,5-triazine-2-yl) amino] -4-oxo-3- [2- (2-hydroxyphenyl) thiazole] -3,4-dihydropyrimidine-2,7-dione may impart different properties to the material, such as enhancing its stability and changing its optical properties, which will also open up a new market world.
However, its market prospects are not smooth. In the chemical industry, strict regulations require complicated testing and certification for new compounds to enter the market. This process is time-consuming, labor-intensive and costly. And the market competition is very fierce, with similar or alternative products emerging in an endless stream. Only by improving technology, reducing costs and increasing efficiency can we gain a firm foothold in the market and seek good opportunities for development.
To sum up, (3E) -5- [ (4,6-dioxy-1,3,5-triazine-2-yl) amino] -4-oxo-3- [2- (2-hydroxyphenyl) thiazole] -3,4-dihydropyrimidine-2,7-dione has a bright future, but it also needs to face many challenges. If we are clever, we will be able to bloom in the market.