1 2 Fluorobenzyl 1h Pyrazolo 3 4 B Pyridine 3 Carboximidamide Hydrochloride
Fluorine Difluoride Fluorobenzene Fluorobenzyl Trifluorotoluene
1-(2-Fluorobenzyl)-1H-Pyrazolo[3,4-B]Pyridine-3-Carboximidamide Hydrochloride
Chemical Name 1-(2-Fluorobenzyl)-1H-Pyrazolo[3,4-b]Pyridine-3-Carboximidamide Hydrochloride
Chemical Name 1-(2-Fluorobenzyl)-1H-Pyrazolo[3,4-b]Pyridine-3-Carboximidamide Hydrochloride
Molecular Formula C14H13ClFN5
Molecular Weight 305.74 g/mol
Appearance Solid (usually white or off - white)
Solubility Soluble in some organic solvents, solubility details vary
Melting Point Specific value depends on purity and experimental conditions
Purity Typically expressed as a percentage (e.g., 95%+, 98%+)
Cas Number If available, unique identifier
Storage Conditions Should be stored in a cool, dry place away from light
Ph Sensitivity May have a certain response to pH changes in solution
FAQ

What is the main use of 1- (2-fluorobenzyl) -1H-pyrazolo [3,4-b] pyridine-3-formamidine hydrochloride?

1- (2-cyanoethyl) -1H-pyrrolido [3,4-b] pyridine-3-acetate methyl ester, this compound has important uses in many fields.

In the field of medicinal chemistry, it can be used as a key drug synthesis intermediate. Due to its unique molecular structure, it can precisely bind to specific biological targets. For example, when developing new anti-tumor drugs, the pyridine and pyrrolido ring structures of this compound can cleverly embed the activity check points of specific proteins in tumor cells, blocking abnormal signal transduction pathways in tumor cells, thereby inhibiting tumor cell proliferation. After chemical modification and structural optimization, it is expected to develop new anti-cancer drugs with excellent curative effect and few side effects.

In the field of materials science, with its own electronic properties and structural stability, it can be used to prepare organic optoelectronic materials. Like in the manufacture of organic Light Emitting Diode (OLED), it can be used as a light-emitting layer or transport layer material. Its conjugated structure is conducive to electron transmission and energy transfer, which can improve the luminous efficiency and stability of OLED devices, so that the display screen has higher brightness, contrast and longer service life.

In the field of pesticide chemistry, it can be used as an important starting material for the creation of new pesticides. Through structural modification, compounds with high insecticidal, bactericidal or herbicidal activities can be derived. Due to its unique mechanism of action against specific pests or pathogens, it can effectively avoid the problem of resistance to traditional pesticides and achieve green and sustainable development of agriculture.

In summary, 1- (2-cyanoethyl) -1H-pyrrolido [3,4-b] methyl pyridine-3-acetate plays an indispensable role in many fields such as medicine, materials, and pesticides, and is of great significance to promote technological innovation and development in various fields.

What are the physical properties of 1- (2-fluorobenzyl) -1H-pyrazolo [3,4-b] pyridine-3-formamidine hydrochloride

1- (2-Cyanoethyl) -1H-pyrrolido [3,4-b] pyridine-3-acetate methyl ester, this compound is an important member of the field of organic chemistry. Its physical properties are unique. Under normal temperature and pressure, it usually appears as a solid state, specific or crystalline, with a fine and regular texture.

Looking at its appearance, it is often pure in color, or white to slightly yellow, like the purity of the first snow in winter, and the elegance of the light of the morning light, showing a natural and simple beauty.

When it comes to solubility, it shows a certain affinity in organic solvents. Organic solvents such as common ethanol and dichloromethane are just like its close partners, allowing them to easily integrate into them to form a uniform dispersion system. However, it maintains a certain distance from water, like two parallel trajectories, difficult to blend, and has little solubility in water. This property also provides a unique basis for its separation and purification process.

Furthermore, the melting point is also one of its important physical properties. Accurately determining its melting point is like affixing a unique identity label to it, providing key reference data for identifying the compound. Its melting point is within a specific temperature range, which is like an accurate scale that can be used to judge the purity and quality of the compound.

In addition, the density of this compound also has its own unique characteristics. When mixed with other substances or participating in reactions, the physical properties of density will have a subtle impact on the physical state and reaction process of the entire system.

In summary, the physical properties of 1- (2-cyanoethyl) -1H-pyrrolido [3,4-b] pyridine-3-methyl acetate contain rich chemical information, which lays a solid foundation for its application in scientific research, industrial production and many other fields.

What is the chemical synthesis method of 1- (2-fluorobenzyl) -1H-pyrazolo [3,4-b] pyridine-3-formamidine hydrochloride

To prepare 1 - (2-furyl) -1H-pyrrolido [3,4-b] pyridine-3-acetate methyl ester, the following method can be used.

First, the key skeleton is constructed by a multi-step reaction with suitable starting materials. First, the furan derivative is taken and reacted with the reactant containing the pyridine structure under specific conditions. This step requires selecting an appropriate catalyst and reaction solvent, controlling the temperature and reaction time, so that the two can effectively combine to form a preliminary intermediate.

Next, the preliminary intermediate is modified with functional groups. In a suitable reaction system, after chemical transformation, the methyl acetate group is introduced. This process requires attention to the selectivity of the reaction to ensure that the methyl acetate is precisely connected to the target position.

The control of the reaction conditions is extremely important. The temperature, the adjustment of pH, and the length of the reaction time will all affect the yield and purity of the product. If the temperature is too high, it may cause side reactions to occur, reducing the purity of the product; if the temperature is too low, the reaction rate will be slow and time-consuming.

The reagents and catalysts used also need to be carefully selected. High-quality reagents and high-efficiency catalysts can improve the reaction efficiency and product quality. And during the reaction process, the reaction process needs to be closely monitored. TLC and other means can be used to determine whether the reaction is completed, so that the reaction conditions can be adjusted in time.

After the reaction is completed, the product needs to be isolated and purified. The impurities are removed by column chromatography, recrystallization and other methods to obtain pure 1- (2-furyl) -1H-pyrrolido [3,4-b] pyridine-3-acetate methyl ester. Through this series of steps, the synthesis of this compound can be achieved.

What are the precautions for the storage and transportation of 1- (2-fluorobenzyl) -1H-pyrazolo [3,4-b] pyridine-3-formamidine hydrochloride?

1 - (2-furyl) -1H-pyrrolido [3,4-b] pyridine-3-acetate methyl ester should pay attention to the following things during storage and transportation:

First, this compound may be more active and easy to react with many substances. Therefore, when storing, be sure to keep it away from active substances such as oxidants, acids, and bases. If it comes into contact with it, it may cause chemical reactions, cause it to deteriorate, and damage its quality and utility.

Second, the temperature and humidity requirements of the storage environment are quite strict. If the temperature is too high, it may cause it to evaporate and decompose faster; if the humidity is too high, it may be damp, which affects the purity. It should be stored in a cool, dry and well ventilated place, the temperature can be controlled between 2-8 ° C, and the humidity should be maintained at 40% -60%.

Third, during transportation, ensure that the packaging is intact. This compound is mostly fine chemicals. If the packaging is damaged, it will not only cause material loss, but also leak or cause pollution to the environment, and even endanger the safety of transporters. Appropriate packaging materials should be selected, such as sealed glass bottles or iron drums lined with plastic bags, etc., to prevent packaging damage caused by vibration and collision.

Fourth, in view of the certain toxicity and irritation of the compound, operators and transporters must take protective measures. You should wear protective clothing, protective gloves and goggles to avoid skin contact and inhalation. In case of accidental contact, you should immediately rinse with plenty of water and seek medical attention in time.

Fifth, the storage and transportation place should be equipped with corresponding fire and leakage emergency treatment equipment. In the event of a fire or leakage accident, emergency treatment can be carried out quickly to reduce losses and hazards. Such as dry powder fire extinguishers, sand and other fire equipment, as well as leakage treatment materials such as adsorption cotton and neutralizer.

What is the market price range for 1- (2-fluorobenzyl) -1H-pyrazolo [3,4-b] pyridine-3-formamidine hydrochloride?

1 - (2-furyl) -1H-pyrrolido [3,4-b] pyridine-3-acetate, which is a rather specialized chemical. It is not easy to determine its market price range, due to the intertwined influence of many factors.

First, the production scale is related to the price. If the manufacturer has sufficient production capacity and large-scale production, with the benefit of scale, the unit production cost may be reduced, and the market price may also be close to the people. On the contrary, small-scale production, the cost is difficult to drop, and the price may be high.

Second, the purity requirement has a significant impact. The price of high-purity products is often much higher than that of low-purity products due to more complex production processes, more refining steps, and more resources and energy. For example, when used in high-end scientific research or medicine, the purity requirements are almost harsh, and the price is naturally high; while for general industrial use, the purity requirements are slightly lower, and the price is relatively low.

Third, the market supply and demand situation determines the price. If the market demand for the substance is strong, but the supply is limited, and it is in the seller's market, the price is likely to rise; if the market demand is weak and the supply is sufficient, a buyer's market is formed, and the manufacturer is a competitive share, or the price may be reduced.

Fourth, changes in raw material costs directly affect the price. The fluctuation of raw material prices directly leads to the fluctuation of production costs, which in turn affects the price of products.

Due to the lack of the above key information, it is difficult to accurately give the price range. If you need the exact price, it is recommended to consult the relevant chemical product suppliers, distributors, or professional chemical product trading platforms to obtain a more accurate price reference.