3-Chloro-Benzenecarboximidamide,Hydrochloride
Linshang Chemical
HS Code |
225354 |
Name | 3-Chloro-Benzenecarboximidamide, Hydrochloride |
Molecular Formula | C7H8Cl2N2 |
Molecular Weight | 191.06 |
Appearance | Solid |
Melting Point | 230 - 232 °C |
Solubility | Soluble in water |
Purity | Typically high purity for chemical use |
Storage Condition | Store in a cool, dry place |
Chemical Class | Aromatic amidine hydrochloride |
Hazard Class | May cause irritation, check SDS for details |
As an accredited 3-Chloro-Benzenecarboximidamide,Hydrochloride factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.
Packing | 100g of 3 - chloro - benzenecarboximidamide, hydrochloride in sealed plastic bags. |
Storage | Store 3 - chloro - benzenecarboximidamide, hydrochloride in a cool, dry, well - ventilated area. Keep it away from heat sources, open flames, and direct sunlight. Store in a tightly - sealed container to prevent moisture absorption and contact with air, which could potentially lead to decomposition or degradation. Ensure it is isolated from incompatible substances such as strong oxidizing agents. |
Shipping | 3 - chloro - benzenecarboximidamide, hydrochloride is shipped in well - sealed containers, compliant with chemical transportation regulations. Special care is taken to prevent moisture and physical damage during transit to maintain its integrity. |
Competitive 3-Chloro-Benzenecarboximidamide,Hydrochloride prices that fit your budget—flexible terms and customized quotes for every order.
For samples, pricing, or more information, please call us at +8615365006308 or mail to info@alchemist-chem.com.
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Tel: +8615365006308
Email: info@alchemist-chem.com


As a leading 3-Chloro-Benzenecarboximidamide,Hydrochloride supplier, we deliver high-quality products across diverse grades to meet evolving needs, empowering global customers with safe, efficient, and compliant chemical solutions.
Its chemical structure, the core is the benzene ring, the benzene ring is connected to the chlorine atom at the third position, and there is another group on the benzene ring as\ (C (= NH) NH_2\). Where this group is connected to the benzene ring, the carbon atom is connected to the benzene ring. Due to the formation of hydrochloric acid, the nitrogen atom in\ (C (= NH) NH_2\) can combine with the hydrogen ion in hydrochloric acid to form the corresponding salt structure. Cover such compounds, which may have important uses in organic synthesis, pharmaceutical chemistry and other fields. The chlorine atom and amidine group in the structure can participate in various chemical reactions. Through modification and transformation, derivatives with many unique properties and functions can be created.
In the field of pesticides, it also has its uses. With the regulation of certain biological activities, it can be used to develop pesticide products such as insecticides and fungicides to help control agricultural pests and diseases. For example, through precise design and modification, it can show high selectivity and efficient inhibitory activity against specific pests or pathogens.
In chemical research, it is an important chemical reagent. Researchers use it to explore various chemical reactions, study their reaction mechanisms and chemical properties, and provide important data and theoretical support for the development of organic synthetic chemistry. It participates in various types of reactions, such as nucleophilic substitution, cyclization, etc., opening up paths for the synthesis of novel organic compounds.
This compound usually appears as a white to off-white crystalline powder, which makes it convenient to store and use. Because of its certain fluidity, it can be easily measured and transferred. It is relatively stable at room temperature and pressure, so care needs to be taken to avoid contact with specific substances and cause reactions.
In terms of solubility, 3-chlorobenzamidine hydrochloride is easily soluble in water, which makes it very useful in the chemical reaction of aqueous systems or in the preparation of drugs. It can be quickly and evenly dispersed in water, participate in various reactions or make aqueous drugs. At the same time, it also has a certain solubility in some polar organic solvents, such as methanol, ethanol, etc., which provides the possibility for its application in different solvent systems.
Its melting point is also one of the key physical properties. The specific melting point data depends on its purity and other factors. Generally speaking, a relatively clear melting point can be used to judge the purity of the compound. If the melting point range is narrow and similar to the theoretical value, it indicates that its purity is high; conversely, if the melting point range is wide and deviates from the theoretical value, the purity may be poor.
In addition, 3-chlorobenzamidine hydrochloride has hygroscopicity, so it needs to be properly sealed during storage to prevent the absorption of moisture in the air from changing its physical properties and affecting its quality and use effect. These physical properties are interrelated and together determine the application and storage requirements of 3-chlorobenzamidine hydrochloride in different fields.
Take 3-chloro-benzonitrile as the starting material, this is the key starting material. Use alcohols as solvents, such as ethanol or methanol, to create a reaction environment. Introduce ammonia into the alcohol solution containing 3-chloro-benzonitrile, and control the temperature and pressure. The temperature should be maintained in a moderate range, such as between 0 and 50 degrees Celsius, and the pressure should also be properly regulated, about normal pressure to several atmospheres. In this step, ammonia gas interacts with 3-chloro-benzonitrile, and after a series of complex reactions such as addition and rearrangement, 3-chloro-benzamidine is formed.
However, the resulting form is a free base, and further operation is required to obtain 3-chloro-benzamidine hydrochloride. After the above reaction is completed, the hydrochloric acid solution is slowly added dropwise to the reaction system. The hydrochloric acid and 3-chloro-benzamidine undergo a neutralization reaction to form the target product 3-chloro-benzamidine hydrochloride. During the process of dropwise addition of hydrochloric acid, close attention should be paid to the pH value of the reaction system until the pH reaches a specific range, such as between 2 and 4, the reaction can be considered complete.
After the reaction is completed, the product can be separated and purified by means of filtration, crystallization, etc. If the product contains impurities, an appropriate solvent can be selected for recrystallization to improve the purity of the product and obtain a pure 3-chloro-benzamidine hydrochloride.
Let's talk about storage first. First, it needs to be placed in a dry place. Because it may be hygroscopic, if the environment is humid, it is easy to cause deliquescence, which affects its quality and purity. Therefore, when choosing a dry, moisture-free storage place, such as a warehouse equipped with dehumidification equipment. Second, it should be stored in a cool place. High temperature or its chemical properties change, accelerating decomposition or deterioration. The temperature should be controlled within a specific range, generally not exceeding 25 ° C. Third, ensure that the storage place is well ventilated. If the ventilation is not good, the volatile gas of the agent will accumulate, or it will cause safety hazards, such as fire and explosion, and it will also damage the health of the storage personnel. Fourth, it needs to be stored separately from other chemicals. This agent may react with certain substances, such as strong oxidizing agents, strong acids and alkalis, etc., and it can be stored separately to avoid the danger caused by interaction.
As for the use, first of all, the user must be familiar with the relevant safety procedures and operation methods. Before operation, professional training should be carried out to understand the characteristics of the agent, potential hazards and emergency treatment methods. Secondly, protective measures should be taken during operation. Appropriate protective clothing, gloves and goggles should be worn to avoid the agent from contacting the skin and eyes. Because of its possible irritation, contact may cause burns, allergies, etc. Furthermore, the use process should strictly control the dosage and reaction conditions. According to the experimental or production requirements, accurately measure, follow the specified reaction temperature, time and pH, etc., to ensure the smooth reaction, obtain the expected product, and avoid side reactions or dangers due to improper conditions. Finally, after use, properly dispose of the remaining chemicals and waste. Do not dump at will, should be handled in accordance with relevant environmental regulations, so as not to pollute the environment.

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