As a leading Sodium 2-[(3,5-Dibromo-4-Hydroxyphenyl)(3,5-Dibromo-4-Oxocyclohexa-2,5-Dien-1-Ylidene)Methyl]Benzenesulfonate supplier, we deliver high-quality products across diverse grades to meet evolving needs, empowering global customers with safe, efficient, and compliant chemical solutions.
What is the chemical structure of Sodium 2- [ (5-Dibromo-4-Hydroxyphenyl) (5-Dibromo-4-Oxocyclohexa-2, 5-Dien-1-Ylidene) Methyl] Benzenesulfonate?
Sodium + 2 - [ (3,5 - dibromo - 4 - hydroxyphenyl) (3,5 - dibromo - 4 - oxocyclohexyl - 2,5 - diene - 1 - subunit) methyl] benzenesulfonate, the chemical structure of this compound is composed of many parts.
In its core structure, there is a benzenesulfonate part, and the benzene ring is connected to other structures by a specific connection method. [ ( 3,5-Dibromo-4-hydroxyphenyl) (3,5-dibromo-4-oxycyclohexyl-2,5-diene-1-subunit) methyl] moiety, containing two 3,5-dibromo-4-substituted phenyl structures. One of them is 3,5-dibromo-4-hydroxyphenyl, which is attached to a specific position in the phenyl ring; the other is 3,5-dibromo-4-oxycyclohexyl-2,5-diene-1-subunit, which exhibits a quinone-like structure in the form of cyclohexadienone. The two parts are connected by methylene and are partially connected to the benzenesulfonate. In this structure, the sodium element exists as an ion and forms a salt bond with the sulfonate of benzenesulfonate, thus forming the chemical structure of the entire compound. In this way, the parts are connected to each other to form the unique structure of this particular compound.
What are the main uses of Sodium 2- [ (5-Dibromo-4-Hydroxyphenyl) (5-Dibromo-4-Oxocyclohexa-2, 5-Dien-1-Ylidene) Methyl] Benzenesulfonate?
Sodium + 2 - [ (3,5-dibromo-4-hydroxyphenyl) (3,5-dibromo-4-oxocyclohexyl-2,5-diene-1-subunit) methyl] benzenesulfonate, which is mostly used in chemical analysis and medical diagnostics.
In chemical analysis, it can be used as a unique reagent. Due to its special bromine, hydroxy and benzenesulfonate groups in its structure, it can specifically react with specific metal ions or organic compounds, so as to achieve accurate detection and quantitative analysis of target substances. For example, stable complexes can be formed with certain transition metal ions, and the content of metal ions in solution can be accurately determined by spectrophotometry or other analytical means.
In the field of medical diagnosis, this compound has shown extraordinary value. Because of its ability to combine with specific biomarkers in organisms, it has been applied in immunoassays, molecular diagnostics and other technologies. For example, in the preparation of immunoassay reagents, it can be labeled on antibodies or antigens. With its unique structural properties, sensitive detection of disease-related biomarkers can be achieved, and early accurate diagnosis of diseases can be assisted.
In addition, in the field of materials science, this compound may be used to prepare functional materials. Its special structure endows materials with specific optical, electrical or chemical properties, which is expected to open up new directions for the research and development of new materials and promote the further development of materials science.
What are the physicochemical properties of Sodium 2- [ (5-Dibromo-4-Hydroxyphenyl) (5-Dibromo-4-Oxocyclohexa-2, 5-Dien-1-Ylidene) Methyl] Benzenesulfonate?
This is called "2 - [ (3,5 - dibromo - 4 - hydroxyphenyl) (3,5 - dibromo - 4 - oxocyclohexyl - 2,5 - diene - 1 - subunit) methyl] sodium benzenesulfonate". Its physical and chemical properties are very important, let me talk about them one by one.
First of all, solubility, this compound often has a certain solubility in water, because it contains sodium sulfonate group, this group is quite hydrophilic, and can form hydrogen bonds with water molecules and other interactions, so it can be dispersed and dissolved in water.
Looking at its stability, under conventional environmental conditions, if there is no extreme temperature, humidity or special chemical reagents, the structure is relatively stable. However, its molecules contain hydroxyl groups and benzene rings and other structures. When encountering strong oxidizing agents, hydroxyl groups may be oxidized, resulting in structural changes. And in the environment of strong acids and bases, the stability is damaged due to the action of acid and base on its functional groups, or the reaction of hydrolysis of compounds.
On the melting point, due to the complex molecular structure, containing many atoms and functional groups, strong intermolecular forces, the melting point is relatively high. The specific value is determined according to accurate experiments, but in general, it requires a higher temperature to melt into a liquid state.
In addition, the appearance is usually white or white solid powder, which is manifested in this appearance under light exposure due to molecular structure characteristics.
The physicochemical properties of this compound have far-reaching implications in many fields. In the field of chemical synthesis, its stability and reactivity determine whether it can participate in the reaction as an effective intermediate; in drug development, solubility and stability are related to its absorption, distribution and metabolism in the living body, which is crucial to the efficacy of drugs.
Sodium 2- [ (5-Dibromo-4-Hydroxyphenyl) (5-Dibromo-4-Oxocyclohexa-2, 5-Dien-1-Ylidene) Methyl] Benzenesulfonate What are the precautions during use?
Sodium and 2 - [ (3,5-dibromo-4-hydroxyphenyl) (3,5-dibromo-4-oxycyclohexyl-2,5-diene-1-subunit) methyl] benzenesulfonate When using, there are a number of things to pay attention to, and it is necessary to pay attention.
First, the properties of this thing may be special from others. When taking it, you must carefully observe its properties, such as color, taste, state, etc. If there is any abnormal change, or it is different from what is expected, it should not be used lightly. It needs to be investigated in detail to prevent errors.
Second, its chemical properties are active, or it reacts with many substances. When using it, avoid contact with contraindicated substances, such as strong oxidizing agents, reducing agents, etc. And at the time of operation, its reaction mechanism must be clarified. If it is mixed rashly, it may cause a violent reaction and cause a dangerous situation.
Furthermore, this agent may be harmful to the human body, such as touching the skin, or causing irritation or allergies; if inhaling its dust mist, it will also damage the respiratory system. Therefore, when operating, be prepared with protective equipment, such as gloves, masks, goggles, etc., to prevent it from hurting the body.
In addition, its storage is also exquisite. It should be placed in a dry and cool place, protected from heat and moisture, and stored separately from other things to prevent deterioration and reaction. After taking it, it should be properly sealed to prevent it from changing its properties due to long-term contact with air, water vapor, etc.
The method of operation should also be in accordance with the procedures. The weighing should be accurate, the action should be steady, and it should not be scattered. If it is accidentally spilled, it should be cleaned according to the appropriate method, and it must not be neglected. In this way, this agent can be used safely and properly to avoid accidental disasters.
What is the production method of Sodium 2- [ (5-Dibromo-4-Hydroxyphenyl) (5-Dibromo-4-Oxocyclohexa-2, 5-Dien-1-Ylidene) Methyl] Benzenesulfonate?
To prepare this "2 - [ (3,5 - dibromo - 4 - hydroxyphenyl) (3,5 - dibromo - 4 - oxycyclohexyl - 2,5 - diene - 1 - subunit) methyl] sodium benzenesulfonate", the method is as follows:
first need to prepare all kinds of raw materials, there are 3,5 - dibromo - 4 - hydroxybenzaldehyde, 3,5 - dibromophenol, benzenesulfonic acid, etc., which are the basis for the preparation of this substance.
Before the adapter, take an appropriate amount of 3,5-dibromo-4-hydroxybenzaldehyde and 3,5-dibromophenol, and dissolve them in a specific solvent, such as ethanol, dichloromethane, etc., depending on their physical properties. Add an appropriate amount of alkali, such as sodium hydroxide or potassium carbonate, to adjust the reaction environment.
Heat up to an appropriate degree, or between 40-60 degrees Celsius, so that the two are condensed. During the reaction, it is necessary to stir frequently to ensure that the materials are mixed evenly and should be smooth. After several times, when the reaction is to a certain extent, or according to the thin-layer chromatography method, it is good to see the consumption of raw materials and the formation of products.
Then, take the resulting intermediate and react with benzenesulfonic acid in another vessel according to a specific method. Or activate benzenesulfonic acid first to make it easy to nucleophilic substitution. In addition, a suitable catalyst needs to be selected to promote the reaction to speed up, such as some metal salts.
In this reaction, it is crucial to control its temperature, duration and material ratio. If the temperature is too high, it is afraid of side reactions; if the time is insufficient, the product is difficult to form. After the reaction is completed, the product is purified by ordinary methods such as extraction, separation, distillation, etc.
The final product is refined by recrystallization and other methods to remove its impurities and improve the purity. Only then can we obtain this "2- [ (3,5-dibromo-4-hydroxyphenyl) (3,5-dibromo-4-oxycyclohexyl-2,5-diene-1-subunit) methyl] benzenesulfonate sodium" boutique.