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What is Sodium 2-Oxobornane-10-Sulphonate?
"Sodium+2-Oxobornane-10-Sulphonate" is the English name of a chemical substance. Its Chinese name is often "sodium 2-oxybornane-10-sulfonate". This substance is quite useful in various fields of chemistry.
In this name, "Sodium" means sodium, and it is represented by "Na" in chemical symbols. It is an active metal element and is often cationic in compounds. " In 2 - Oxobornane - 10 - Sulphonate "," Oxo "refers to a carbonyl group (C = O), which contains this functional group in the surface molecule;" bornane "refers to bornane, which is a specific carbon ring structure;" 10 - Sulphonate "indicates that there is a sulfonate (-SO 🥰) attached to the 10-position carbon of bornane. This compound combines the metallic properties of sodium with the organic structural properties of carbonyl and sulfonate groups.
In the field of organic synthesis, it may be used as a catalyst, auxiliary agent, etc. Due to the hydrophilicity of the sulfonic acid group, it may affect the solubility and phase transfer properties of the reaction system; the existence of the carbonyl group endows the molecule with specific reactivity and can participate in a variety of organic reactions, such as nucleophilic addition. In chemical products, due to its unique structure, it may be used in the preparation of surfactants and functional materials. With its hydrophilicity and specific structure, the surface properties of materials and intermolecular interactions can be adjusted.
What are the main uses of Sodium 2-Oxobornane-10-Sulphonate?
Sodium-2-oxo-camphene-10-sulfonate has a wide range of uses. In the field of chemical industry, it is often used as a surfactant. It has a unique molecular structure, which can reduce the surface tension of liquids and change the interaction between different substances. It is wonderful for emulsification, dispersion and solubilization. When preparing emulsions, the oil phase can be evenly dispersed in the aqueous phase to form a stable emulsion system, which is indispensable in coatings, cosmetics and other industries.
In the pharmaceutical industry, it is also useful. Or it can be used as a pharmaceutical auxiliary to help drugs dissolve, disperse, and increase drug stability and bioavailability. Some insoluble drugs can better reach the effective site and improve the efficacy by means of their solubilization.
In the field of materials science, in the process of synthesizing specific materials, it may be able to regulate the morphology and structure of materials. For example, in the preparation of nanomaterials, it can affect the growth and aggregation morphology of nanoparticles, and obtain materials with specific properties, which is of great significance in the preparation of electronic and optical materials.
In the field of organic synthesis, it can be used as a catalyst or catalytic aid. With its special structure and properties, it accelerates or regulates the process of organic reactions, improves the selectivity and yield of reactions, and is an important help for organic synthesis chemistry.
What are the physical and chemical properties of Sodium 2-Oxobornane-10-Sulphonate?
Sodium + 2 - Oxobornane - 10 - Sulphonate, Chinese name or sodium 2 - oxybornane - 10 - sulfonate, this is an organic compound, which has attracted much attention in organic synthesis and related chemical fields. Its physical and chemical properties are unique, which is related to application efficiency.
First of all, its properties are described. Under normal circumstances, it may be a white crystalline powder. The texture is fine and uniform. This physical form is easy to store, transport and metering, and it is convenient for industrial production and laboratory operation.
Solubility is also an important property. The substance has good solubility in water, can form hydrogen bonds with water molecules and interact uniformly in the form of ions. This property is of great significance in aqueous system reactions or formulations. For example, in some organic synthesis reactions that need to be carried out in aqueous solution, its good solubility can make the reactants fully contact and speed up the reaction process.
In terms of stability, under normal temperature and pressure and general storage conditions, the compound is relatively stable, and the chemical structure is not prone to significant changes. However, in case of extreme conditions such as high temperature and strong acid and base, the stability will be challenged. Under high temperature, the vibration of chemical bonds in the molecule intensifies, or causes decomposition reactions, which affects its quality and efficacy; in a strong acid-base environment, the sulfonic acid groups, carbonyl groups and other parts of its molecular structure may participate in acid-base reactions, changing the chemical composition and properties.
Melting point is also a key physical parameter. The specific melting point value fluctuates according to its purity and other factors, and is roughly within a specific temperature range. Melting point can be used as one of the purity indicators. The melting point of high-purity substances is usually more sensitive and concentrated. If it contains impurities, the melting point may decrease and the melting range becomes wider. This property plays a key role in the purification and quality control of compounds.
In summary, the physical and chemical properties of Sodium + 2 - Oxobornane - 10 - Sulphonate have far-reaching impact on its application in different fields. In practical use and research, these properties need to be considered in detail to achieve reasonable application and effective control.
What are the production methods of Sodium 2-Oxobornane-10-Sulphonate?
The production methods of sodium-2-oxo-camphene-10-sulfonate have been around since ancient times, and there are many kinds. One method starts with camphene. After oxidation, 2-oxo-camphene is first prepared. Then, 2-oxo-camphene is interacted with a sulfonating agent, and after the sulfonation step, it is finally neutralized in an appropriate alkali solution to obtain this sodium-2-oxo-camphene-10-sulfonate. In this process, the oxidation method is quite critical. Select the appropriate oxidizing agent and reaction conditions to obtain high-purity 2-oxo-camphene.
In addition, there are also methods to use specific natural products as starting materials. Find natural products rich in related structures, and through multiple steps of delicate chemical transformation, first modify their structures to suit the needs, and then perform sulfonation and neutralization operations to obtain the target product. This path requires a good understanding of the properties and reaction characteristics of natural products in order to skillfully perform techniques to make the reaction proceed smoothly.
Another is to start with synthetic intermediates. First carefully design and synthesize intermediates with specific structures, which need to be conducive to subsequent sulfonation and salt formation reactions. Then, follow the established reaction process, perform sulfonation and neutralization steps to obtain sodium-2-oxo-camphene-10-sulfonate. This method requires high design and synthesis techniques for intermediates, but if properly operated, the purity and quality of the product can be precisely controlled.
All production methods have advantages and disadvantages. It is necessary to carefully choose the appropriate method according to the availability of raw materials, cost considerations, product quality requirements and many other factors to achieve the best production efficiency.
What are the precautions for using Sodium 2-Oxobornane-10-Sulphonate?
In the case of sodium 2-oxobornane-10-sulfonate, all kinds of things should be paid attention to when using it. First of all, when storing this agent, it should be placed in a cool and dry place, away from direct sunlight. If exposed to the sun or in a humid place, it may cause its chemical properties to deteriorate and its efficacy to be impaired.
Furthermore, when using it, it is necessary to clean the utensils. If the utensils are unclean, impurities are mixed in, or they react with the medicine, which will damage its purity and affect the effectiveness of use.
Also, during use, follow the standard operating procedures. The dosage of the medicine must be accurate. If used too much, the drug will have too much power, or it will change; if the dosage is insufficient, the effect will not be achieved, and it will be futile.
And the reaction of this agent may vary in different environments. Where temperature, humidity, pH are different, it should be carefully observed for changes. If the environment is uncomfortable, or the drug is ineffective, it should not be careless.
Repeat, the operator should also be protected. Although this agent may not be highly toxic, it may come into contact with the skin, mouth and nose, or there is a risk of irritation. Therefore, when handling, it is advisable to wear protective clothing, gloves, and masks to ensure your own safety.
In short, the use of sodium 2-oxybornane-10-sulfonate must be attended to in terms of preservation, access, operation, environment, and protection, in order to make the best use of it without harm.