Products

Sodium 4-((4-((4-Hydroxy-2-Methylphenyl)Azo)Phenyl)Amino)-3-Nitrobenzenesulphonate

Lingxian Chemical

Specifications

HS Code

998158

Chemical Formula C20H16N5NaO6S
Molecular Weight 491.42 g/mol
Appearance Typically a colored solid (color depends on specific form and environment)
Solubility Soluble in polar solvents like water to some extent due to the presence of sulphonate group
Boiling Point Decomposes before reaching a typical boiling point due to its complex organic structure and presence of azo and nitro groups
Ph In Solution Affects by the sulphonate group, may be slightly basic in water
Stability Can be sensitive to light, heat, and reducing agents due to azo and nitro functional groups
Absorption Spectrum Absorbs light in the visible region (azo - chromophore), characteristic absorption peaks related to azo and aromatic structures
Toxicity May be toxic; azo compounds can potentially release aromatic amines which are of concern for human health and environmental impact
Packing & Storage
Packing 1 kg of Sodium 4-[(4-[(4-Hydroxy-2 - Methylphenyl)Azo]Phenyl)Amino]-3 - Nitrobenzenesulphonate in sealed bag.
Storage Sodium 4-[(4-[(4-Hydroxy-2-Methylphenyl)Azo]Phenyl)Amino]-3-Nitrobenzenesulphonate should be stored in a cool, dry place, away from heat sources and direct sunlight. As it may be sensitive to moisture and degradation, keep it in a tightly - sealed container to prevent contact with air and humidity, which could affect its chemical properties. Avoid storing near incompatible materials to prevent potential reactions.
Shipping "Sodium 4-((4-((4-Hydroxy-2 - Methylphenyl)Azo)phenyl)Amino)-3 - Nitrobenzenesulphonate" is a chemical. Shipping should involve proper containment in corrosion - resistant containers, following hazardous chemicals regulations to ensure safe transit.
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Sodium 4-((4-((4-Hydroxy-2-Methylphenyl)Azo)Phenyl)Amino)-3-Nitrobenzenesulphonate
General Information
Historical Development
Sodium 4- ((4- (4-Hydroxy-2-Methylphenyl) Azo) phenyl) Amino) -3-Nitrobenzenesulphonate this thing, which originated from the research of the chemical sages in the past. At that time, everyone was dedicated to the art of synthesis, wanting to make new and useful properties.
At the beginning, the craftsmen were in the bucket room, using bottles and cans as vessels, and fire candles as sources, carefully preparing all kinds of raw materials. After a long time of experimentation, they were not discouraged after repeated failures. Finally, this exquisite synthesis method was obtained to make this compound.
At the beginning, its use was still limited, and it was only a matter of academic inquiry. However, with the passage of time, everyone gradually realized its extraordinary properties. Or in the dyeing industry, making fabrics colorful; or in the process of scientific research, it is the aid of analysis. It has made great contributions to the progress of industry and academia. Since its inception, with the development of science and technology, the preparation method has become better, and the field of application has become wider. This is the general outline of its historical evolution.
Product Overview
A chemical researcher wrote this article to describe the overview of Sodium 4- ((4- (4-Hydroxy-2-Methylphenyl) Azo) phenyl) Amino) -3-Nitrobenzenesulphonate.
This product also has a unique structure. Looking at its molecular formula, it contains elements such as nitrogen, oxygen, sulfur, etc., and has a special group combination. 4- ((4- ((4-hydroxy-2-methylphenyl) azo) phenyl) amino) -3 -nitrobenzene sulfonate is called sodium, revealing its complex structure.
Its properties, or have specific solubility, in some solvents or can be well dispersed. In terms of color, it can be used in dyeing and other fields because it contains azo groups or has a bright color. And because of its stable structure, it can maintain the constant chemical properties under certain conditions.
This product may have important uses in industrial production and scientific research experiments. In the dyeing industry, with its color characteristics, it can enhance the color of fabrics; in the field of scientific research, or as a reagent for specific reactions, it can help explore new chemical phenomena. It is a promising product in the field of chemistry.
Physical & Chemical Properties
The text of "Mengxi Brush Talk" is empirical and clear. The following is a similar style, using ancient Chinese style to explain the physical and chemical properties of "Sodium 4- ((4- (4-Hydroxy-2-Methylphenyl) Azo) phenyl) Amino) -3-Nitrobenzenesulphonate":
This agent is also, looking at its shape, under normal circumstances or in the shape of powder, color or light or dark, depending on the amount of impurities contained. Touch it, fine and dusty. In terms of its solubility, it is slightly soluble in water, but heating can increase its solubility. It seems that water is used as a medium to solve the aggregation of its molecules. Thermal stability is also the same. When exposed to high temperature, the molecular structure gradually dissolves, changes color, and produces gas.
Its chemical activity is active, and when it encounters alkali, it should generate new compounds, and the change of functional groups leads to the change of properties. When it encounters acid, it also reacts, and the mechanism is complex, which cannot be hidden in a word. Therefore, the physical and chemical properties of this agent are unique, and it may be available in various fields of chemical industry and scientific research. It should be studied in detail to clarify its properties and make the best use of it.
Technical Specifications & Labeling
Today there is a thing called Sodium 4- ((4- (4-Hydroxy-2-Methylphenyl) Azo) phenyl) amino) -3-Nitrobenzenesulphonate. In this case, the process specification and identification (commodity parameters) are the key.
Looking at the process specification, from the selection of raw materials, it is necessary to be fine and pure, without impurities. The preparation method requires strict procedures. The temperature, ratio and duration are fixed, and there is no difference in the pool. The reaction device should also be suitable for cleaning, so as not to disrupt the process of foreign objects.
As for the identification (commodity parameters), its chemical composition and characteristics should be detailed. Such as the depth of color, the presence or absence of taste, and the state of solid liquid, all need to be clear. Complex purity geometry, a number of content, these parameters are necessary for those who use this product, in order to identify its quality and determine whether it is appropriate. Process specifications and identification (commodity parameters) complement each other to ensure the quality and utility of this product.
Preparation Method
The method of making Sodium 4- ((4- (4-Hydroxy-2-Methylphenyl) Azo) phenyl) Amino) -3-Nitrobenzenesulphonate is related to the raw materials and production process, reaction steps, and catalytic mechanism. The raw materials need to be carefully selected to suit their characteristics. The production process is essential in temperature control, speed regulation, and timing. First, the 4-Hydroxy-2-Methylphenyl and other substances should be responded to in a certain order, and the temperature should be controlled on time, so that the intermediate body can be produced. Next, the intermediate and the residual material should be reacted again, and the product can be obtained through multi-step reaction. The reaction step should be careful, and one step is wrong, which can lead to qualitative changes. The catalytic mechanism is also heavy. The appropriate catalyst is selected and used to promote the speed of the reaction and the rate of production. According to these methods, the quality and quantity of this product can be guaranteed.
Chemical Reactions & Modifications
Modern chemistry is refined, with the name Sodium 4- ((4- (4-Hydroxy-2-Methylphenyl) Azo) phenyl) amino) -3-Nitrobenzenesulphonate, which is quite important in chemical industry. Its transformation should be wonderful, and its physical properties are strange, and scholars have studied it more than once.
View its transformation should be, the sum of various elements, such as yin and yang, into this new quality. If you want it to be smooth and good, the temperature, pressure, and amount of agent need to be precisely controlled. If there is a slight difference in the pool, it should be messy and the quality cannot meet the requirements.
As for the change of physical properties, or increase its stability, or change its color, or easily dissolve it. This all depends on the ingenuity of the transformation to achieve all kinds of uses. Make this substance in printing and dyeing, medicine, each show its ability. We study people, we should be poor, make good use of it, in order to promote the prosperity of chemical industry, for the benefit of people's livelihood.
Synonyms & Product Names
A chemical substance is called Sodium 4- ((4- (4-Hydroxy-2-Methylphenyl) Azo) phenyl) Amino) -3-Nitrobenzenesulphonate. The title of this substance also has many synonymous names and commodity names in the industry.
Considering the past, the naming of chemical substances is not fixed, and various places have names according to their characteristics, uses, and people or places found. Over time, in order to avoid confusion, systematic nomenclature has gradually emerged. However, common names and trade names are still circulating.
This Sodium 4- ((4- ((4-Hydroxy-2-Methylphenyl) Azo) phenyl) Amino) -3-Nitrobenzenesulphonate, or according to its structure characteristics, the proportion of components, or due to the field of application, has different synonymous names. As for the name of the product, in order to recognize its characteristics and facilitate its sales, merchants will also choose another good name. Although there are many names, they all refer to the same chemical substance, which is a common phenomenon in chemical research and business transactions.
Safety & Operational Standards
About "4 - [ (4 - hydroxy - 2 - methylphenyl) azo] phenyl) amino] - 3 - sodium nitrobenzene sulfonate" Product Safety and Operating Specifications
If you want to study this "4 - [ (4 - hydroxy - 2 - methylphenyl) azo] phenyl) amino] - 3 - sodium nitrobenzene sulfonate" chemical, the first thing to do is to specify its safety and operating specifications to ensure that everything goes smoothly and is not at risk.
When handling this product, make sure that the operator wears appropriate protective equipment. Such as wearing protective clothing to prevent it from touching the skin and causing damage to the skin; wearing protective gloves to protect the hands; also need to wear protective goggles to protect the eyes from its harm. And the operation should be in a well-ventilated place. If it is in a closed and narrow place, its volatile gas will gather and not dissipate, which may cause the risk of inhalation and endanger health.
When storing, it should be placed in a dry, cool and ventilated place. Do not be near fire or heat sources to prevent accidental explosion. It also needs to be separated from other chemicals such as oxidants and reducing agents. Because of its active chemical nature, if it is mixed with other things or reacts violently, it will cause disaster.
If it accidentally touches the skin, rinse it with plenty of water quickly, and observe the situation. If there is any discomfort, seek medical treatment immediately. If it enters the eyes, rinse it with water immediately. When rinsing, turn the eyelids up and down to ensure that the rinse is complete, and seek medical attention as soon as possible. In case of leakage, cut off the fire source first, and do not let the fire near it to prevent ignition and explosion. After covering it with sand, vermiculite, etc., collect it carefully, dispose of it properly, and do not discard it at will to avoid polluting the environment.
In short, those who operate this object must abide by safety and operating standards, and keep it clean in subtle places, so as to ensure safety and success in research.
Application Area
Yu Yan chemical products, recently pay attention to a thing, named Sodium 4- ((4- (4-Hydroxy-2-Methylphenyl) Azo) phenyl) Amino) -3-Nitrobenzenesulphonate. This material has a wide range of uses, in the field of printing and dyeing, it can be used as a dye, giving fabrics gorgeous color, bright and lasting color, the longer the time, the more its rhyme. In the way of detection, it also has a wonderful use, can accurately detect the existence of specific substances, and help scientific research. And in the preparation of medicine, it may have the potential to assist the molding of drugs and increase their curative effect. Its application field covers all parties, and it is a treasure of chemical industry. When it is deeply explored, it can be used to make the best of it and add color to various industries.
Research & Development
Yu Su aspires to the research of chemical products, and now focuses on Sodium 4- ((4- (4-Hydroxy-2-Methylphenyl) Azo) phenyl) amino) -3-Nitrobenzenesulphonate this product. Viewing this product, its structure is exquisite, its characteristics are unique, and it has potential uses in many fields.
Our generation has worked hard to explore its synthesis method with ancient methods and new technologies, hoping to obtain an efficient and pure manufacturing process. After repeated experiments, various variables, such as temperature, ratio of reagents, reaction time, are analyzed in detail.
Furthermore, study its performance, consider its stability and activity in different environments. To understand its capabilities in industrial production, scientific research and exploration, and to expand its field of application.
We are committed to the research and development of this product, adding to the field of chemistry, promoting its progress, and benefiting the world.
Toxicity Research
I am committed to the analysis of toxicants, and now I focus on Sodium 4- ((4- (4-Hydroxy-2-Methylphenyl) Azo) phenyl) Amino) -3-Nitrobenzenesulphonate this substance.
This compound has an exquisite structure, but the suspicion of toxicity is lingering in my heart. I have checked ancient books and collected data to explore its toxicity. Or in the body of animals, observe its reaction; or analyze its composition, measure its harm.
The study of toxicity is related to people's livelihood. If this substance is highly toxic, it will accidentally flow into the world, and it may cause death and ecological imbalance. Therefore, the analysis must be cautious and the data must be detailed. I hope to get a precise theory, explain the strength of its toxicity and the harm, and avoid disasters for the world and protect the safety of all things. In this way, it will live up to my heart of analysis.
Future Prospects
I am a researcher of chemicals, and Changsi Sodium 4- ((4- (4-Hydroxy-2-Methylphenyl) Azo) phenyl) Amino -3-Nitrobenzenesulphonate the future development of this substance. Although its research and application have achieved results today, I still have a long-term prospect.
I hope that in the future, this chemical can make new breakthroughs in the field of medicine. Or it can accurately target diseases, help doctors overcome difficult diseases, and bring good news to patients. In material science, I also hope that it can improve the properties of materials, making materials tougher, more durable and have special functions.
Although there may be thorns ahead, I firmly believe that with the research and exploration of our researchers, we will be able to explore its wider uses, demonstrate its extraordinary value, and make this chemical shine in the future, for the benefit of the world, in order to meet our good expectations for the future.
Frequently Asked Questions
What is the chemical structure of Sodium 4- ((4- (4-Hydroxy-2-Methylphenyl) Azo) Phenyl) Amino) -3-Nitrobenzenesulphonate?
This is a rather complex organic compound named "4- ((4- ((4-hydroxy-2-methylphenyl) azo) phenyl) amino) -3-nitrobenzene sulfonate sodium". Looking at the naming, its chemical structure can be gradually explained.
"4- ((4- ((4-hydroxy-2-methylphenyl) azo) phenyl) amino) " This part indicates the existence of a phenyl structure, and is connected to a hydroxyl group and a methyl group at a specific position (4 positions), and is connected to another phenyl group through an azo group (-N = N -), which in turn is connected to a subsequent structure through an amino group.
"Sodium 3-nitrobenzene sulfonate" indicates that there is also a benzene ring structure, which is connected to a nitro group (-NO 2) at the 3rd position, and the benzene ring is also connected to a sulfonic acid group (-SO-H), and forms a sodium salt (SO-Na).
From this, it can be seen that the chemical structure of this compound contains multiple benzene rings, which are connected by azo groups, amino groups, etc., and also contain many functional groups such as hydroxyl groups, methyl groups, nitro groups, and sodium sulfonate salts. Its structure is complex and unique, and the interaction of functional groups in each part endows the compound with specific chemical properties and potential application characteristics. Or it has color characteristics due to its azo structure, which can be used in dye-related fields; and because it has sodium sulfonate salts, or it has certain water solubility and other characteristics.
What are the main uses of Sodium 4- ((4-Hydroxy-2-Methylphenyl) Azo) Phenyl) Amino -3-Nitrobenzenesulphonate?
This is a chemical substance called 4 - [ (4 - [ (4 - hydroxy - 2 - methylphenyl) azo] phenyl) amino] - 3 - nitrobenzene sulfonate sodium. This substance has important uses in many fields.
In the printing and dyeing industry, it is often used as a dye. With its unique chemical structure, it can firmly bond with fabric fibers, giving fabrics rich colors and good color fastness. It can keep the fabric bright after washing, sun exposure and other processes, so it is widely used in the field of textile printing and dyeing, contributing to the creation of colorful fabric products.
In scientific research, it also has important value. Due to its special chemical properties and structure, it is often used as an analytical reagent. Researchers can use its chemical reactions and phenomena with specific substances to accurately analyze and detect the composition and content of other substances. With it, they can deeply explore the chemical reaction mechanism and provide key support for the development of chemical disciplines.
Furthermore, in some aspects of industrial production, this substance can be used as an additive. It can improve product performance. For example, in the production of some coatings and inks, an appropriate amount of this substance can be added to optimize product stability, dispersion, etc., improve product quality, and meet different industrial production needs.
In summary, sodium 4- [ (4- [ (4-hydroxy-2-methylphenyl) azo] phenyl) amino] -3-nitrobenzene sulfonate plays an indispensable role in printing and dyeing, scientific research, industrial production, etc., and is of great significance to promoting the development of related fields.
What is the safety of Sodium 4- ((4- (4-Hydroxy-2-Methylphenyl) Azo) Phenyl) Amino) -3-Nitrobenzenesulphonate?
This substance is named 4- ((4- (4-hydroxy-2-methylphenyl) azo) phenyl) amino) -3-nitrobenzene sulfonate sodium. Although there is no direct relevant record in ancient literature, it can be analyzed by analogy with the research ideas of traditional chemical substances.
From the structural point of view, some azo compounds may decompose under specific conditions, such as light, high temperature or reaction with specific substances, to produce aromatic amines, some aromatic amines have potential carcinogenicity. The substance contains nitro groups. Nitro compounds are usually oxidizing and toxic to a certain extent. They may affect the activity of biological macromolecules such as proteins and enzymes in organisms. After entering the human body, they may interfere with normal physiological metabolism and cause health problems. Although the sodium sulfonate group is relatively hydrophilic, it can enhance the water solubility of the substance and facilitate dispersion in the environment, but it may also change its behavior in the ecosystem.
In terms of environmental safety, it is discharged into the natural environment. Due to its complex structure, microorganisms are difficult to degrade, or long-term residues. It may be toxic to aquatic organisms, such as fish, algae, etc., affecting the balance of aquatic ecology. Accumulation in soil, or affecting the structure and function of soil microbial community, hindering plant growth.
When using, it is necessary to strictly follow modern chemical safety operating procedures and take protective measures to avoid contact with the skin, inhalation or accidental ingestion. Production, storage and transportation should also be carried out in accordance with relevant safety standards to ensure the safety of personnel and the environment.
What is the production method of Sodium 4- (((4-Hydroxy-2-Methylphenyl) Azo) Phenyl) Amino) -3-Nitrobenzenesulphonate?
This is a method for preparing sodium 4- [ (4- [ (4-hydroxy-2-methylphenyl) azo] phenyl) amino] -3 -nitrobenzene sulfonate.
To prepare this product, the following steps are often used. First take sodium 4-amino-3-nitrobenzene sulfonate as the starting material, and combine it with an appropriate diazotization reagent, such as sodium nitrite, in an acid environment, in an appropriate proportion, under low temperature conditions. This process requires precise temperature control and time control to ensure the stable formation of diazonium salts.
Then, take 4-hydroxy-2-methylaniline, dissolve it in a suitable solvent, such as alcohol or a mixed system of water and organic solvent, and adjust it to a suitable pH.
When the diazonium salt is properly prepared, under suitable temperature and stirring conditions, slowly add the diazonium salt to the 4-hydroxy-2-methylaniline solution for coupling reaction. During the reaction, pay close attention to the color changes and temperature fluctuations of the system, and fine-tune the reaction conditions according to the actual situation to promote the coupling reaction to proceed fully.
After the reaction is completed, the product can be separated and purified by post-treatment methods such as crystallization, filtration, washing, drying, etc., to obtain high purity 4- [ (4- [ (4-hydroxy-2-methylphenyl) azo] phenyl) amino] -3 -nitrobenzene sulfonate sodium.
It should be noted that the whole preparation process requires strict reaction conditions, and factors such as raw material purity, reaction temperature, pH, reaction time, etc. have a significant impact on the yield and purity of the product. And some of the reagents involved in the preparation are toxic and corrosive, and safety procedures must be followed during operation, and protective measures must be taken.
What are the common forms of Sodium 4- (((4-Hydroxy-2-Methylphenyl) Azo) Phenyl) Amino) -3-Nitrobenzenesulphonate on the market?
Sodium 4- ((4- (4-Hydroxy-2-Methylphenyl) Azo) Phenyl) Amino) -3-Nitrobenzenesulphonate, this is an organic compound, on the market, common forms are diverse.
One is solid powder, the color may be orange yellow, brown yellow, etc., the texture is fine. This form is easy to store and transport, and it is easy to accurately measure and feed in many industrial production links. In the dye industry, powdered materials can be easily dispersed in solvents or other media according to specific formulations and processes, and used for dyeing operations such as fabrics and leather.
The second is liquid, or dissolved in specific organic solvents or water to form a uniform solution. The liquid form is conducive to use in some application scenarios that require extremely high mixing uniformity, such as in some special printing and dyeing processes, it can quickly and evenly contact the dyed object to achieve a uniform dyeing effect. In addition, liquid products are easier to achieve continuous and automated addition operations in some automated production equipment.
The third is granular, with a certain particle size and shape. The granular form is relatively stable, the fluidity is good, and it is not easy to cause dust flying problems. It is more convenient during storage and operation. Some specific production processes that require granular materials will use this form.