2,3-Dichloro-1-Fluoro-4-Nitrobenzene

Linshang Chemical

Specifications

HS Code

660823

Chemical Formula C6H2Cl2FNO2
Molar Mass 209.99 g/mol
Appearance Solid
Color Yellow to orange
Solubility In Water Insoluble
Solubility In Organic Solvents Soluble in common organic solvents
Hazard Class Irritant

As an accredited 2,3-Dichloro-1-Fluoro-4-Nitrobenzene factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.

Packing & Storage
Packing 500g of 2,3 - dichloro - 1 - fluoro - 4 - nitrobenzene in sealed chemical - grade container.
Storage 2,3 - dichloro - 1 - fluoro - 4 - nitrobenzene should be stored in a cool, dry, well - ventilated area. Keep it away from heat sources, flames, and oxidizing agents. Store in a tightly - sealed container to prevent leakage. Due to its potential toxicity and reactivity, it should be separated from incompatible substances, with storage areas clearly marked and access restricted to trained personnel.
Shipping 2,3 - dichloro - 1 - fluoro - 4 - nitrobenzene, a hazardous chemical, is shipped in specialized, leak - proof containers. Strict regulations govern its transport to prevent spills and ensure safety during transit.
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2,3-Dichloro-1-Fluoro-4-Nitrobenzene 2,3-Dichloro-1-Fluoro-4-Nitrobenzene
General Information
Where to Buy 2,3-Dichloro-1-Fluoro-4-Nitrobenzene in China?
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Frequently Asked Questions

As a leading 2,3-Dichloro-1-Fluoro-4-Nitrobenzene 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 2,3-dichloro-1-fluoro-4-nitrobenzene?
2% 2C3 + - + dioxy + - + 1 + - + alkane + - + 4 + - + cyanopyridine, this is the expression of chemical substances. Its main uses are quite extensive, in the context of "Tiangong Kaiwu", in classical Chinese.
This compound has important uses in various fields. In the field of pharmaceutical chemistry, it can be a key intermediate for the synthesis of drugs. Physicians who want to make special drugs often rely on this substance to build the structure of drug molecules. Through exquisite chemical reactions, it can be derived into specific pharmacologically active ingredients, or can heal diseases and help patients recover.
It is also indispensable in the field of materials science. It can be integrated into new materials through specific processes to give materials unique properties. Such as enhancing the stability of materials and improving their physical properties, so that materials can still maintain good performance in specific environments, such as used in high-end electronic equipment, to ensure stable operation under complex working conditions.
Furthermore, in the field of organic synthetic chemistry, it is an important cornerstone of organic synthesis. Chemists can use it as a starting material to construct complex and diverse organic compounds through complex organic reaction steps, contributing to the development of organic chemistry, expanding the variety and application range of organic compounds, and promoting the continuous improvement of organic synthesis technology to meet the needs of society for various new organic materials and compounds.
What are the physical properties of 2,3-dichloro-1-fluoro-4-nitrobenzene
2% 2C3 + - + dioxy + - + 1 + - + alkane + - + 4 + - + carbonyl pyridine is an organic compound. Its physical properties are crucial and are related to many properties and uses of this compound.
The appearance of this compound may be a colorless to light yellow liquid, often with a specific odor. Its odor is unique, or due to the interaction of atoms and groups in the molecular structure.
In terms of solubility, 2% 2C3 + - + dioxy + - + 1 + - + alkane + - + 4 + - + carbonyl pyridine or in some organic solvents, such as common ethanol, ether, etc. This is due to the existence of suitable interaction forces between its molecular structure and organic solvent molecules, such as van der Waals forces, hydrogen bonds, etc., which promote the mixing of the two with each other. The solubility in water may be limited due to the poor matching of the overall polarity of the molecule with the polarity of water.
Melting point and boiling point are also important physical properties. The melting point is the temperature at which the compound changes from a solid state to a liquid state, and the boiling point is the temperature at which it changes from a liquid state to a gas state. The melting point and boiling point of 2% 2C3 + - + dioxygen + - + 1 + - + alkyl + - + 4 + - + carbonylpyridine depend on the strength of the intermolecular force. The stronger the intermolecular force, the higher the melting point and boiling point. The carbonyl isopolar group in its molecular structure can enhance the intermolecular force, which in turn affects the melting point and boiling point.
Density is used as the mass of a substance per unit volume, and the density of 2% 2C3 + - + dioxy + - + 1 + - + alkane + - + 4 + - + carbonyl pyridine also has a specific value. This value is affected by the molecular mass and the degree of intermolecular arrangement. Relatively high molecular mass and tight molecular arrangement may cause it to be denser.
In addition, the refractive index of the compound is also one of the physical properties. The refractive index reflects the characteristics of the change of light propagation speed and direction in it, and is related to the molecular structure and electron cloud distribution of the compound.
Understanding the physical properties of 2% 2C3 + - + dioxy + - + 1 + - + alkane + - + 4 + - + carbonyl pyridine is helpful for its separation, purification, identification and application in chemical and pharmaceutical fields. For example, in drug synthesis, choose an appropriate reaction solvent according to its solubility, and use the melting point and boiling point to separate and purify the product; in material science, develop new optical materials with the help of refractive index and other properties.
What are the chemical properties of 2,3-dichloro-1-fluoro-4-nitrobenzene
2% 2C3 + - + dioxy + - + 1 + - + alkane + - + 4 + - + carboxyl pyridine is also an organic compound. This compound has various chemical properties.
It has a certain polarity, because its molecular structure contains dioxy, alkyl and carboxyl pyridine parts. The oxygen atoms in the dioxy part are strong electronegativity, and the electron cloud distribution is uneven, so that the molecule is polar. This polarity makes it exhibit good solubility in polar solvents, and can be dissolved with polar molecules such as water through hydrogen bonding and other interactions.
In terms of reactivity, the carboxyl group is an active functional group. The carboxyl group is acidic and can neutralize with bases to form corresponding carboxylate and water. In organic synthesis, this carboxyl group can participate in the esterification reaction and form ester bonds with alcohols under acid catalysis, which is an important path for the preparation of ester compounds.
Furthermore, the pyridine ring also affects its chemical properties. Pyridine rings are aromatic and have a special electron cloud distribution, which can participate in electrophilic substitution reactions. Due to the strong electronegativity of nitrogen atoms, the electron cloud density of pyridine rings is uneven, and electrophilic substitution reactions mostly occur at the β-position of pyridine rings.
In addition, the alkane part in this compound is relatively stable, but under certain conditions, such as the action of strong oxidants or high temperatures, reactions may also occur. Its carbon-carbon bonds may be oxidized and broken, resulting in molecular structure changes.
2% 2C3 + - + dioxy + - + 1 + - + alkane + - + 4 + - + carboxylpyridine Due to its unique molecular structure, it combines chemical properties such as polarity, acidity and aromatic ring reactivity. It may have potential application value in organic synthesis, medicinal chemistry and other fields.
What are the synthesis methods of 2,3-dichloro-1-fluoro-4-nitrobenzene?
There are many synthesis methods of 2% 2C3 + - + dioxy + - + 1 + - + alkyne + - + 4 + - + cyanopyridine. Now, according to the idea of "Tiangong Kaiwu", it is described in ancient Chinese.
To make this substance, one method can be obtained from suitable starting materials through ingenious chemical reaction steps. First take a certain kind of compound containing a specific functional group, place it in a special container, and heat it at a precise temperature. This heating is not random, and it needs to be carefully controlled according to the change of weather and temperature. It is just like the ancient alchemy, which is completely different, thousands of miles away.
When heating, closely observe the change of its state and color, and add an appropriate amount of auxiliary reagents in time. The amount of this reagent also needs to be accurately measured. More is too much, and less is not effective. When the reaction reaches a specific stage, observe that the phenomenon is in line with expectations, and then slowly cool down to make the reaction transition smoothly.
The second method can borrow the catalytic action of other substances. Choose a catalyst with suitable activity and mix it properly with the starting material. This mixing is also exquisite, and it needs to be uniform, such as blending. Then, under specific environmental conditions, either apply moderate pressure or adjust the temperature to make the reaction proceed according to the established path. During the reaction process, carefully observe, and in case of abnormalities, quickly find countermeasures, or temperature regulation, or supplementation, to ensure a smooth reaction.
Furthermore, it can be achieved gradually through a multi-step reaction according to the ingenious path of organic synthesis. First, the key intermediate product is obtained. The purity and structure of this intermediate product are crucial, which is crucial to the success or failure of the final product. After the intermediate product is prepared, it is carefully designed to combine with other things to gradually build the structure of the target molecule. Every step of the reaction requires strict adherence to the ancient law and flexibility, such as craftsmen carving beautiful jade and meticulously crafting, in order to make a tool.
Overall, the method of synthesizing 2% 2C3 + - + dioxy + - + 1 + - + alkyne + - + 4 + - + cyanopyridine, although different, requires a rigorous attitude, insight into physical properties, familiarity with the laws of reaction, and integration of the essence of ancient methods with today's synthesis techniques to obtain its delicacy.
What are the precautions for storing and transporting 2,3-dichloro-1-fluoro-4-nitrobenzene?
2% 2C3 + - + dioxy + - + 1 + - + hydrocarbons + - + 4 + - + amino naphthalenes need to pay attention to many matters during storage and transportation. These substances are related to safety and quality and should not be ignored.
The first word for storage is to find a cool, dry and well-ventilated place. Because dioxy and hydrocarbons are volatile, if they are in a warm and humid place, they are prone to increased volatilization and even chemical reactions. And amino naphthalenes may absorb moisture and deteriorate in a humid environment, causing changes in their chemical properties and affecting subsequent use.
Furthermore, the storage place should be away from fire and heat sources. 2% 2C3-dioxy-1-hydrocarbon-4-aminonaphthalene and other chemicals are flammable. In case of open flames and hot topics, they are very easy to burn and explode, endangering the safety of the surrounding area.
When storing, it should also be stored separately from oxidants, acids, bases, etc. Because of its active chemical properties, it must be in contact with other chemicals or react violently, resulting in danger.
As for transportation, the transportation vehicle must be equipped with good fire protection, explosion-proof and leak-proof devices. The loading and unloading process should be handled with care, and it should not be touched or dragged to avoid damage to the packaging and leakage of materials.
During transportation, pay close attention to temperature and humidity changes and adjust them in a timely manner. And the route of the car should avoid sensitive areas such as water sources and densely populated areas to prevent accidental leakage from causing serious harm to the environment and people. Escorts also need professional training, familiar with emergency treatment methods, and can respond quickly and effectively in case of emergencies, minimizing losses and hazards.