Methyl 4 6 Diamino 2 5 Fluoro 1 2 Fluorobenzyl 1h Pyrazolo 3 4 B Pyridin 3 Yl Pyrimidin 5 Yl Carbamate
Fluorine Difluoride Fluorobenzene Fluorobenzyl Trifluorotoluene
Methyl (4,6-diamino-2-(5-fluoro-1-(2-fluorobenzyl)-1H-pyrazolo[3,4-b]pyridin-3-yl)pyrimidin-5-yl)carbamate
Chemical Name Methyl (4,6-diamino-2-(5-fluoro-1-(2-fluorobenzyl)-1H-pyrazolo[3,4-b]pyridin-3-yl)pyrimidin-5-yl)carbamate
Chemical Formula C22H20F2N8O2
FAQ

Methyl (4,6 - diamino - 2 - (5 - fluoro - 1 - (2 - fluorobenzyl) -1H - pyrazolo [3,4 - b] pyridine - 3 - yl) pyrimidine - 5 - yl) carbamate what is the chemical structure

The structural analysis of this compound is as follows:

The name of this compound is verbose and complex, and it is composed of many group descriptions. "Methyl (4,6-dioxy-2- (5-chloro-1- (2-chlorophenyl) -1H-pyrrolido [3,4-b] pyridine-3-yl) pyridine-5-yl) oxyacetate".

From the overall structure, it is based on a core skeleton and gradually connects various substituents. The core part contains a pyridine-pyrrole structure, namely 1H-pyrrolido [3,4-b] pyridine. On this core structure, there is a 2-chlorophenyl group connected at the 1st position, a pyridine-5-group connected at the 3rd position, and the 4,6 positions of the pyridine ring are dioxy substitutions. At the 2nd position of the pyridine-5-group, there is a 5-chloro substituent connected.

In addition, the overall structure is also connected to the acetate by an oxygen group, and there is a methyl connection at the beginning. This structure contains multiple heterocyclic and halogenated phenyl groups and other structural fragments. These structural fragments are interconnected to form the chemical structure of the complex compound. The mutual influence of each part determines the unique physical and chemical properties and possible biological activities of the compound.

What is the main use of Methyl (4,6 - diamino - 2 - (5 - fluoro - 1 - (2 - fluorobenzyl) -1H - pyrazolo [3,4 - b] pyridine - 3 - yl) pyrimidine - 5 - yl) carbamate

I don't know what this "Methyl + (4,6-dioxy-2 - (5-fluoro-1 - (2-fluorobenzyl) -1H-pyrrolio [3,4-b] pyridine-3-yl) thiazole-5-yl) oxybenzyl carbonate" is, but judging from its name, it must be a product of exquisite synthesis. In the context of "Tiangong Kaiwu", although there is no such thing, it is mentioned in the book about all kinds of creations, focusing on the principle and skill of the generation of all things.

If this thing existed in ancient times, or because of its complex structure and difficulty in making, it is difficult for ordinary people to see and use it. However, with the spirit of exploration and research advocated in the book, with time, smart craftsmen may be able to explore it.

In today's world, this compound must have its place in many fields such as medicine and chemical industry. Or for the development of special drugs to fight against various diseases, to solve the pain of the world; or in the chemical process, to lay the foundation for the research and development of new materials, so that the utensils are more sophisticated. Although this thing is not contained in "Tiangong Kaiwu", it contains the meaning of knowing things, pioneering and innovative, and the current research and exploration of compounds, there is something in common, which is to promote the progress of the world's skills and creations.

Methyl (4,6 - diamino - 2 - (5 - fluoro - 1 - (2 - fluorobenzyl) -1H - pyrazolo [3,4 - b] pyridine - 3 - yl) pyrimidine - 5 - yl) carbamate What is the safety of

This is a question about the safety of methyl (4,6-dihydroxy-2- (5-chloro-1- (2-chlorophenyl) -1H-pyrrolido [3,4-b] pyrimidine-3-yl) pyrimidine-5-yl) hydroxyacetate. This compound has a complex structure. Although "Tiangong Kaiwu" is an ancient scientific and technological masterpiece, it does not involve the safety characteristics of such modern organic compounds.

In today's chemical field, considering its safety needs to be explored from multiple aspects. First of all, its chemical activity, containing hydroxyl groups, chlorine atoms and other functional groups, hydroxyl groups can cause hydrogen bonding, affecting its binding with biomolecules; chlorine atoms or lipid-soluble, easy to penetrate the biofilm. This may involve toxicity, such as affecting biological macromolecules such as cell proteins and nucleic acids, interfering with normal physiological functions.

Secondary stability, under high temperature, light or a specific chemical environment, or decomposition, rearrangement and other reactions occur to generate new products, or have higher toxicity.

Looking at its environmental impact, if released in the environment, due to complex structure, or difficult to degrade, after accumulation, it will affect the ecological balance and produce toxic effects on animals, plants and microorganisms.

In terms of its exposure route, it may enter the human body through mouth, inhalation or skin contact, and the absorption efficiency of different routes is different from that of the target organ, which determines the degree of harm.

In summary, although this object is not covered in Tiangong Kaiwu, according to modern chemical knowledge, a comprehensive assessment of its safety requires consideration from multiple aspects such as chemical properties, environmental behavior and human exposure to understand its latent risk.

Methyl (4,6 - diamino - 2 - (5 - fluoro - 1 - (2 - fluorobenzyl) -1H - pyrazolo [3,4 - b] pyridine - 3 - yl) pyrimidine - 5 - yl) carbamate What are the synthesis methods

The synthesis of methyl (4,6-dihydroxy-2 - (5-chloro-1 - (2-chlorophenyl) -1H-pyrrolido [3,4-b] pyrimidine-3-yl) pyrimidine-5-yl) hydroxyacetate is a delicate chemical technique.

To synthesize this substance, the starting material can be selected, and the molecular structure can be constructed one by one by organic synthesis. The first step is to find pyridine or pyrimidine compounds with appropriate substituents, such as pyridine derivatives containing chlorophenyl substitutions, and pyrimidine derivatives containing corresponding substituents, to react with nucleophilic substitution or condensation, including their key structural fragments.

In the reaction, the reaction conditions need to be carefully selected. The choice of temperature and solvent is extremely important. The appropriate temperature or between tens to hundreds of degrees Celsius, depending on the specific reaction steps and reactant activity. The solvent should be selected with good solubility to the reactants and no interference to the reaction, such as common organic solvents tetrahydrofuran, dichloromethane, etc. The

catalytic system is also indispensable. Metal catalysts or organic catalysts can be selected according to the reaction type. Metal catalysts such as palladium and copper complexes often play a key role in the formation of carbon-carbon or carbon-heteroatomic bonds; organic catalysts such as amines and phosphines may be used to promote the reaction in specific condensation and addition reactions.

After multi-step reaction, through separation and purification techniques, such as column chromatography, recrystallization, etc., to remove impurities, pure methyl (4,6-dihydroxy-2- (5-chloro-1- (2-chlorophenyl) -1H-pyrrolido [3,4-b] pyridine-3-yl) pyrimidine-5-yl) hydroxyacetate can be obtained. Each step of the reaction needs to be carefully controlled, and all links are interlocked to achieve the purpose of synthesis.

Methyl (4,6 - diamino - 2 - (5 - fluoro - 1 - (2 - fluorobenzyl) -1H - pyrazolo [3,4 - b] pyridine - 3 - yl) pyrimidine - 5 - yl) carbamate market prospects

"Methyl (4,6-dioxy-2 - (5-chloro-1 - (2-chlorophenyl) -1H-pyrazolo [3,4-b] pyridine-3-yl) pentyl-5-yl) oxybenzoate", the market prospect is quite important.

At present, in the field of medicine, scientific research has advanced, and many new compounds have emerged, hoping to cure all kinds of diseases. Such ester compounds containing special structures may have unique pharmacological activities. Its affinity to receptors and inhibition of enzymes all have potential efficacy, and may become the basis for innovative drugs.

In the context of agrochemical, pest resistance is increasing, and conventional agents are gradually embarrassed. If this compound has insecticidal and bacteriostatic properties, is environmentally friendly, and is easy to degrade, it will be favored. It can be made into a high-efficiency pesticide, protecting farmers and ensuring ecological balance.

However, its market prospects are not smooth. The synthesis method needs to consider cost and efficiency. If the process is complicated and the consumables are expensive, mass production is difficult, and market expansion is also difficult. And safety assessment is related to ecology and humans and animals, and must be rigorous and comprehensive. Regulations and supervision are increasingly strict, and the road to compliance cannot be ignored.

Furthermore, the market competition is fierce, and similar competitors may already have a place. To stand out, you must have unique advantages, such as significant curative effect, excellent cost performance, etc. Promotion and marketing are also indispensable, so that the industry knows its advantages, in order to open a new market.

Even if there are challenges, opportunities also exist. With the help of technology, synthetic improvement can be expected, and costs may be reduced. In-depth research and development, the effect may be more obvious. If we can seize the opportunity, break the problem, comply with regulations, and expand the market, this "methyl (4,6-dioxy-2- (5-chloro-1- (2-chlorophenyl) -1H-pyrazolo [3,4-b] pyridine-3-yl) pentyl-5-yl) oxybenzoate" will be used in the pharmaceutical and agrochemical markets.