Benzene,1-Chloro-3-Nitro-

Linshang Chemical

Specifications

HS Code

164219

Chemical Formula C6H4ClNO2
Molar Mass 157.55 g/mol
Appearance Yellow - brown solid
Odor Characteristic, pungent
Density 1.34 g/cm³ (approximate)
Melting Point 43 - 45 °C
Boiling Point 235 - 237 °C
Solubility In Water Insoluble
Solubility In Organic Solvents Soluble in common organic solvents like ethanol, ether
Flash Point 103 °C (closed cup)

As an accredited Benzene,1-Chloro-3-Nitro- factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.

Packing & Storage
Packing 1 - chloro - 3 - nitro - benzene packaged in 1 - kg bottles for chemical storage and transport.
Storage 1 - Chloro - 3 - nitrobenzene should be stored in a cool, dry, well - ventilated area away from heat, sparks, and open flames. It should be stored in tightly closed containers made of compatible materials, such as steel or certain plastics. Keep it separate from oxidizing agents, reducing agents, and substances that could react violently with it to prevent dangerous reactions.
Shipping 1 - Chloro - 3 - nitrobenzene is a hazardous chemical. Shipping requires proper packaging in accordance with regulations, likely in sealed, corrosion - resistant containers. Documentation must clearly label it, and transport should follow strict safety protocols for hazardous substances.
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Benzene,1-Chloro-3-Nitro- Benzene,1-Chloro-3-Nitro-
General Information
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Frequently Asked Questions

As a leading Benzene,1-Chloro-3-Nitro- 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 main uses of 1-chloro-3-nitrobenzene?
1 + -Deuterium-3 + -aminonaphthalene has a wide range of uses.
In the field of medicine, it can contribute a lot to drug research and development. Because the structure of aminonaphthalene is common in many active pharmaceutical ingredients, it can be chemically modified by 1 + -deuterium-3 + -aminonaphthalene to obtain specific pharmacologically active compounds. For example, in the development of some anti-cancer drugs, using its structural characteristics, deuterium atoms are introduced to change the metabolic kinetics of the drug, so that the drug can be metabolized more slowly in the body, prolonging the action time, improving the anti-cancer effect, and reducing adverse reactions.
In the field of materials science, 1 + -deuterium-3 + -aminonaphthalene can be used as a raw material for the synthesis of functional materials. Because its molecular structure contains special groups, it can react with other compounds to construct materials with unique optical, electrical or mechanical properties. For example, when synthesizing organic optoelectronic materials, its participation in the reaction can improve the luminous efficiency and stability of the material, and it can be used in devices such as organic Light Emitting Diode (OLED) to improve the display effect and service life.
In the dye industry, this substance also plays an important role. The structure of aminonaphthalene gives it good color properties, and the introduction of deuterium atoms may fine-tune its optical properties. On this basis, dyes with bright colors, good light resistance and high stability can be developed for use in textile, printing and other industries to meet different dyeing needs, such as dyeing high-end fabrics, presenting a lasting bright color.
What are the physical properties of 1-chloro-3-nitrobenzene?
Mercury is a metallic element that is liquid at room temperature and has many unique physical properties. It is a shiny silver-white liquid with a dense texture and excellent fluidity. It shines brightly in light, resembling flowing silver. This is its most significant appearance feature.
Mercury has an extremely dense density, about 13.6 times that of water. This property makes it able to slide on the surface of many substances and is difficult to be bound by ordinary containers. Therefore, in ancient times, it was used to make special utensils. In some alchemy or alchemy activities, its unique density properties play a key role.
Mercury has an extremely low melting point, only -38.87 ° C, and a boiling point of 356.6 ° C. This means that at relatively low temperatures, mercury can change from solid to liquid, and then to gaseous at slightly higher temperatures. This sensitive response to temperature changes may provide special clues in some ancient activities to observe changes in seasons or explore the laws of material transformation.
Mercury has good electrical conductivity and can play a role in circuit conduction. Although ancient knowledge of electricity was extremely limited, in some occult experiments or similar activities, mercury may have attracted attention for its ability to conduct some unknown "forces".
Mercury is also volatile and will gradually be released into the air. Exposure to a volatile environment for a long time can easily cause poisoning and damage physical health. In ancient times, some people who were engaged in mercury-related operations, although they did not know its principle, may have noticed some abnormal physical reactions, and thus became awe-struck by mercury.
3-Aminobenzonitrile has a white to light yellow crystalline powder in appearance. Its melting point is between 103 and 106 ° C. In this temperature range, the substance will change from solid to liquid. This melting point characteristic determines its physical form at a certain temperature environment, and has an important impact on its storage and use conditions.
3-Aminobenzonitrile is insoluble in water, but soluble in common organic solvents such as ethanol, ether, etc. This solubility characteristic makes it possible to achieve effective extraction or reaction according to solvent characteristics during chemical synthesis or material separation. For example, in ancient times, if someone tried to extract or utilize such substances, it was necessary to choose the appropriate solvent according to its solubility.
From the perspective of stability, 3-aminobenzonitrile is relatively stable at room temperature and pressure, but if it encounters open flames or hot topics, it is dangerous to burn. In ancient times, fire prevention became a top priority for places where such substances were stored. In the event of a fire, its combustion characteristics and possible harmful products may cause serious harm to the surrounding environment and people.
What are the chemical properties of 1-chloro-3-nitrobenzene?
The chemical properties of 1 + -3 + -aminobenzene are as follows:

, which is an active element. In the molecule of aminobenzene, it is reactive. The atom can be reactive to other atoms or groups, such as generation, addition, etc. In aminobenzene, the reactive activity of the whole molecule is affected.
Aminobenzene, its amino group (-NH2O) is reactive. This is because the nitrogen atom has unformed solitary children, which can accept reactive children and show reactive properties. Amino can be reactive to amides, reactive to amides or acid anhydrides to form amides.
Furthermore, benzene is aromatic. Benzene can be substituted and reversed, such as benzene, nitrification, sulfonation, etc. Because the amino group is supplied with benzene, it increases the density of benzene clouds, especially in the benzene and sulfonated positions, so the benzene substitution is easy to be generated in the benzene and sulfonated positions.
In the oxidation reaction, the aminobenzene can be oxidized. The amino group is easily oxidized to nitro or other nitrogen-containing high-temperature compounds. Benzene may also be oxidized to break its aroma under certain conditions.
In addition, the aminobenzene can form complexes in the gold. Due to the fact that the nitrogen atom of the amino group can provide the coordination of solitons and gold atoms, this property can be used in the multi-domain such as separation, extraction and catalysis.

Of course, the chemical properties of 1 + -3 + -aminobenzene are rich, and the interaction between aminobenzene and aminobenzene creates a multi-chemical reaction property, which is important in the synthesis, material science, chemical research and other aspects.
What are the preparation methods of 1-chloro-3-nitrobenzene?
The method of making calamine is very particular. First, take the high-quality calamine, choose the pure ground, wash it with water, and remove its mud. Then, calcined in charcoal fire until it is red, this is to remove its dryness.
After the calcination is completed, quickly put the red calamine into the child's stool. This step is called quenching. Children need to use pure ones to help medicinal power. Quenching, take the stone, drain it, and re-calcining and re-quenching, the number of times depends on the texture of the stone, or three or five, so that the texture of calamine is crisp.
After that, the quenched calamine is ground into a very fine powder, the finer the better. When grinding the powder, use a fine mortar with even force, and no coarse grains should remain.
The powder that has been ground is further purified by the water fly method. Take an appropriate amount of water, place the powder in the water, stir well, and make the powder fully suspended. Then let it stand, wait for the coarse grains to settle, gently pour out the supernatant, and collect the fine powder that has settled. Repeat the water fly method several times, and the supernatant is almost colorless to obtain pure calamine powder.
The prepared calamine can be used for the preparation of various medicines, treating eye diseases, treating sores, etc., all of which are effective. Although the method is complicated, it is a doctor, and it must be done carefully, so as to live up to the kindness of the doctor and cure the disease with medicine.
What are the precautions for storing and transporting 1-chloro-3-nitrobenzene?
Oil, oxygen, and aminobenzene should be kept in storage.
As far as it is concerned, it is flammable and explosive, so the place where it is stored must be well-preserved, and open flames should be prohibited. Tanks need to be made of high-quality and corrosion-resistant materials to prevent leakage. On the way, they are also equipped with anti-leakage equipment. The company is well-versed in the way of emergency treatment.
Oxygen is non-flammable, but it supports combustion, and it is not allowed to be stored with flammable materials. The materials of tanks and pipes must be able to withstand high temperatures, and there are regular inspections for leakage. It is also necessary to have clear warnings to ensure safety.
Aminobenzene is a toxic and harmful chemical product. It should be stored in a good place where it is dry and clear. It should be stored in equal parts of oxidation and acid to avoid mixing and risk. Package is tight to prevent leakage. In the process, there are relevant anti-pollution supplies in the warehouse, and there are emergency rescue equipment and storage plans. If the leakage is accidentally generated, the pollution will be quickly isolated, the fire source will be cut off, and the crowd will be evacuated, and it will be properly placed according to its characteristics.
In the process of storage, all three of these three should follow the relevant operating procedures to ensure safety.