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Benzeneacetamide, N-(Aminoiminomethyl)-2,6-Dichloro-, Monohydrochloride

Linshang Chemical

Specifications

HS Code

824102

Chemical Formula C9H9Cl2N3O·HCl
Molar Mass 282.55 g/mol (approximate, considering monohydrochloride)
Appearance Solid (usually, but appearance can vary based on purity and preparation)
Solubility Solubility characteristics depend on solvent; may have limited solubility in non - polar solvents and better solubility in polar solvents like water - containing polar organic solvents
Melting Point Specific melting point value would require experimental determination, but can be in a certain temperature range typical for such organic compounds
Boiling Point Boiling point also needs experimental determination; generally, organic compounds with similar structures have boiling points in a specific range
Density Density value would be determined experimentally and is related to its molecular packing and mass - volume ratio
Ph In Solution pH of its aqueous solution would depend on the dissociation of the hydrochloride group, acidic in nature
Pka The pKa value related to the acidic or basic groups in the molecule would influence its dissociation behavior in solution
Stability Stability can be affected by factors like temperature, light, and presence of reactive substances; may be stable under normal storage conditions but can decompose under extreme conditions

As an accredited Benzeneacetamide, N-(Aminoiminomethyl)-2,6-Dichloro-, Monohydrochloride factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.

Packing & Storage
Packing 500g of Benzeneacetamide, N-(aminoiminomethyl)-2,6 - dichloro - , Monohydrochloride in sealed chemical - grade bags.
Storage Store “Benzeneacetamide, N-(aminoiminomethyl)-2,6 - dichloro-, Monohydrochloride” in a cool, dry place away from heat and ignition sources. Keep it in a tightly - sealed container to prevent moisture absorption and degradation. Avoid storing near incompatible substances. It should be stored in a well - ventilated area, following all safety regulations for handling of chemicals.
Shipping Shipment of "Benzeneacetamide, N-(aminoiminomethyl)-2,6 -dichloro-, Monohydrochloride" must follow strict chemical shipping regulations. It should be properly packaged to prevent leakage, with labels indicating its hazardous nature for safe transport.
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Benzeneacetamide, N-(Aminoiminomethyl)-2,6-Dichloro-, Monohydrochloride Benzeneacetamide, N-(Aminoiminomethyl)-2,6-Dichloro-, Monohydrochloride
General Information
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Frequently Asked Questions

As a leading Benzeneacetamide, N-(Aminoiminomethyl)-2,6-Dichloro-, Monohydrochloride supplier, we deliver high-quality products across diverse grades to meet evolving needs, empowering global customers with safe, efficient, and compliant chemical solutions.

What are the chemical properties of this product N- (Aminoiminomethyl) -2,6-dichlorophenylacetamide monohydrochloride
This substance is called N- (hydroxyacetyl) -2,6-difluorophenylacetamide monosuccinic acid succinic acid, and its chemical properties are as follows:
This compound contains a variety of functional groups, and the hydroxyacetyl group has a certain hydrophilicity, which can form hydrogen bonds with water molecules, so that the substance may have certain solubility in polar solvents. Its existence may participate in a variety of chemical reactions. Due to the high activity of hydroxyl groups, esterification reactions can occur, dehydration with acids under the action of catalysts forms ester compounds, changing molecular polarity and physical properties, or affecting its metabolism and pharmacological activity in living organisms.
2,6-difluorophenylacetamide part, the fluorine atom is highly electronegative, which changes the electron cloud density of the benzene ring, affects the electrophilic substitution reactivity of the benzene ring, reduces the electron cloud density of the benzene ring, and makes it more difficult for the electrophilic reagent to attack the benzene ring; and the special electronic effect and space effect of the fluorine atom may make the whole molecule conformation and reactivity unique. The amide bond has certain stability, but it can be hydrolyzed under acid-base conditions. Hydrolysis under acidic conditions produces corresponding acids and amines, and carboxylate and amine under basic conditions.
Monosuccinic acid The succinic acid part is a dicarboxylic acid structure, acidic, can react with bases to form salts, can participate in polycondensation reactions, form polymers with polyols or polyamines, etc., and change the physical and chemical properties of substances, such as increasing molecular weight, changing solubility and mechanical properties. In addition, the molecular structure of the substance is relatively complex, and different groups interact with each other, or make it exhibit special chemical behaviors under specific conditions. It may have potential application value in the fields of organic synthesis and medicinal chemistry. It can be used as an intermediate for the synthesis of more complex bioactive molecules, or for the preparation of materials with special properties.
What are the main uses of N- (Aminoiminomethyl) -2,6-dichlorophenylacetamide monohydrochloride?
N- (hydroxyacetamide) -2,6-difluorophenylacetamide monosodium salt is an important organic compound with a wide range of main uses.
In the field of medicine, this compound is often used as a key intermediate. Due to its unique chemical structure and properties, it can be converted into substances with specific pharmacological activities through specific chemical reactions. For example, when developing some antibacterial drugs, it can participate in the synthesis process, laying the foundation for the construction of drug molecules with precise antibacterial targets and good antibacterial effects. Through clever modification and combination, the final drug can be endowed with excellent pharmacokinetic properties, such as suitable solubility, stability and bioavailability, thereby enhancing the efficacy and safety of the drug.
In the field of pesticides, it also plays an important role. It can be used as a key starting material for the synthesis of new pesticides. With the help of chemical modification of its structure, highly effective pesticides can be developed for specific pests or diseases. Such pesticides are often highly selective, only acting on target pests, and have little impact on other beneficial organisms in the environment, thus conforming to today's green and environmentally friendly agricultural development concept. At the same time, due to its unique structure, the synthetic pesticides may have a long shelf life, which can protect crops from pests and diseases for a long time, reduce the frequency of pesticide use, and reduce environmental pollution.
In the field of materials science, N - (hydroxyacetamide) - 2,6 - difluorophenylacetamide monosodium salt also shows potential application value. It can participate in the preparation process of some functional materials. For example, in the synthesis of some polymer materials, it is introduced as a special structural unit to change the physical and chemical properties of the material, such as improving the thermal stability, mechanical properties or imparting specific optical and electrical properties to the material, so as to meet the needs of different fields for special performance materials.
What is the production process of N- (Aminoiminomethyl) -2,6-dichlorophenylacetamide monohydrochloride?
The production process of monosodium salt of N- (hydroxyacetamido) -2,6-difluorophenylacetamide is a delicate and complex process. The beginning is to choose high-quality raw materials, which is the foundation. The raw materials used need to be pure and free of impurities to ensure the quality of the product.
In the reaction kettle, use precise measurement to put the raw materials. Control the temperature of the reaction, strict its temperature, if the ancient alchemy, the difference of a millimeter is thousands of miles. The temperature is related to the speed of the reaction and the purity of the production. Always use delicate instruments to measure the temperature and adjust the temperature to ensure that the temperature is appropriate.
Next, add an appropriate amount of catalyst. The catalyst, if the boat is oiled, promotes the process of the reaction, but it does not change itself. Its type and amount are determined by repeated research and testing, in order to achieve the best effect.
During the reaction, the pressure of the reaction is also controlled. The size of the pressure has a great impact on the direction and rate of the reaction. With exquisite equipment, stabilize the pressure and adjust the pressure to make the reaction smooth.
After the reaction is completed, separate and purify. First, use the method of filtration to remove its insoluble impurities. Then use the technology of extraction to improve the purity of the product. After the method of crystallization, the product is condensed into a crystalline state, pure and of high quality. The drying step after
cannot be ignored. At a suitable temperature and time, remove its moisture and ensure the stability of the product.
The whole process is interlinked, like the silk thread of brocade weaving, all of which are indispensable. Every step requires the heart of a craftsman and meticulous work to obtain high-quality N - (hydroxyacetamide) - 2,6 - difluorophenylacetamide monosodium salt.
What is the market outlook for N- (Aminoiminomethyl) -2,6-dichlorophenylacetamide monohydrochloride?
Nowadays, there is N- (hydroxycarbamoyl) -2,6-difluorobenzamide monosodium salt, and its market prospects are as follows:
This substance is used in various fields of chemical industry, and its use is gradually widening. In the field of agrochemical, it is a key component of new and efficient insecticides. Due to its unique chemical structure, it has a specific inhibitory effect on pest nerve conduction, and can accurately act on specific targets of pests. It has high insecticidal activity and good selectivity, and has little harm to beneficial insects and the environment. With the rise of green agriculture, the demand for environmentally friendly pesticides is increasing. The pesticides produced by this compound conform to this trend and have a bright market prospect.
In the field of pharmaceutical research and development, it has also emerged. It has been found that it can inhibit the growth of specific tumor cells, and may become an important raw material for the development of new anti-cancer drugs. With the increasing incidence of cancer, the market for anti-cancer drugs is huge and growing rapidly. If this compound is successfully developed and launched, it will gain a huge market share.
Furthermore, in the field of materials science, it can be used as a raw material for the synthesis of special polymers. The polymers synthesized from this compound have unique physical and chemical properties, such as high heat resistance and excellent mechanical properties, and have great potential for application in high-end fields such as aerospace and electronics.
In summary, N- (hydroxycarbamoyl) -2,6-difluorobenzamide monosodium salt has shown important value in many fields. With the development of various industries, its market demand is expected to continue to grow, and the prospect is quite promising.
What are the precautions for the use of N- (Aminoiminomethyl) -2,6-dichlorophenylacetamide monohydrochloride?
N- (hydroxyacetamide) -2,6-difluorophenylacetamide monosodium salt has its uses in pharmaceuticals and other fields. When using it, pay attention to the following matters:
First, this material has chemical activity. When storing, it must be selected in a dry, cool and well-ventilated place to prevent water vapor, hot topics and strong light intrusion to prevent its properties from changing, causing activity to decrease or even deteriorate.
Second, when taking it, be sure to prepare suitable protective equipment, such as gloves, goggles and masks. Because of its risk of irritation to the skin, eyes and respiratory tract, if you accidentally touch it, you should immediately rinse it with a lot of water. If the situation is serious, seek medical treatment quickly.
Third, during the operation, ensure that the surrounding ventilation is smooth to prevent the dust from dispersing in the air. When preparing the solution, it is advisable to follow the precise ratio and follow the correct steps to achieve the best effect.
Fourth, before mixing with other chemicals, be sure to study the compatibility of the two in detail. Improper mixing or chemical reactions can not only damage the efficacy of N- (hydroxyacetamide) -2,6-difluorophenylacetamide monosodium salt, but also cause dangerous conditions. Fifth, after use, the remaining material and related waste should be properly disposed of according to regulations and should not be discarded at will to avoid pollution to the environment.