What is the chemical structure of D-2-Oxobornane-10-Sulfonic Acid?
D-2-oxybornane-10-sulfonic acid, this is an organic compound with a unique molecular structure. Looking at its structure, it is based on the skeleton of bornane. Bornane is a cyclic structure composed of carbon and hydrogen, with a unique spatial configuration.
In this compound, the carbon atom at position 2 is oxidized into a carbonyl group, which is the carbon-oxygen double bond structure (C = O), giving the molecule a specific chemical activity and polarity. The carbon atom at position 10 is connected to the sulfonic acid group (-SO 🥰 H). The sulfonic acid group is a strong acidic group containing elements such as sulfur, oxygen, and hydrogen. The sulfur atom is connected to three oxygen atoms in different chemical bonds, and one of the oxygen atoms is then connected to the carbon atom of the bornane skeleton.
Such a combination of structures makes D-2-oxybornane-10-sulfonic acid both stable as a cyclic skeleton, and has various chemical reactivity due to the existence of carbonyl and sulfonic acid groups. This compound is often used as a catalyst in the field of organic synthesis, catalyzing many organic reactions with the acidic nature of sulfonic acid groups; the presence of carbonyl groups also provides a unique check point for reactions, which can participate in reactions such as nucleophilic addition. In fields such as medicinal chemistry, its unique structure may provide a foundation for the development of drug molecules with specific activities.
What are the main uses of D-2-Oxobornane-10-Sulfonic Acid?
D-2-oxo-camphene-10-sulfonic acid, this is a very useful organic compound, which has developed its strengths in many fields.
First, in the field of organic synthesis, it often acts as a high-efficiency chiral catalyst. In asymmetric synthesis reactions, it can precisely induce the formation of chiral compounds, assisting chemists to obtain high-purity single chiral configuration products. This is of great significance in the field of drug development, because the activity of many drugs is closely related to the chiral structure, through which it can efficiently synthesize drug intermediates with specific chiral properties, paving the way for the creation of new specific drugs.
Second, in the field of materials science, it is also useful. It can participate in the preparation of certain functional materials. Through its special chemical structure and properties, it endows the materials with unique properties, such as improving the optical and electrical properties of the materials, and then expands the application scenarios of materials and promotes the progress of materials science.
Third, in analytical chemistry, it can be used as a special reagent. By virtue of its selective reaction with specific substances, sensitive detection and accurate analysis of certain compounds can be realized, enabling researchers to gain insight into the composition and structure of complex samples.
Furthermore, in the fine chemical industry, it is a key raw material for the synthesis of a variety of fine chemicals. Through a series of chemical reactions, a variety of high-value-added fine chemicals are derived to meet the needs of different industrial fields for special chemicals, promoting the vigorous development of the fine chemical industry.
What are the physical properties of D-2-Oxobornane-10-Sulfonic Acid?
The physical properties of D-2-oxybornane-10-sulfonic acid are as follows:
This substance is often in a white crystalline state, with a pure and uniform appearance. Under normal temperature and pressure, the properties are quite stable, and when encountering hot topics or strong oxidizing agents, there may be variables. Its melting point is about [specific melting point value], and the determination of the melting point is like grasping the key node of its material transformation, just like the ancients observed the change of solar terms and knew the change of phenology.
Its solubility is also an important physical property. It has a certain solubility in water, just like a salt melts in water, because some groups in the molecular structure meet with water molecules and can be dispersed. In organic solvents such as ethanol and acetone, it also dissolves to varying degrees. It dissolves relatively well in ethanol, just like a fish gets water. Due to the appropriate force between molecules and ethanol, it can blend with each other.
Furthermore, density is also a factor to consider. Its density [specific density value], the characterization of density, is like a ruler to measure the compactness of its material, reflecting the density of molecular arrangement, just like the ancients measured the land and clarified the compactness of its texture.
Looking at its smell, it is almost odorless, or only has a very weak special smell, not pungent, not disturbing, just like the fragrance hidden in the dark in the quiet night sky, if not there.
The physical properties of this substance are of great significance in many fields such as chemical industry and medicine. During chemical synthesis, it is necessary to precisely control the reaction conditions according to its melting point, solubility, etc., in order to obtain the ideal product. For example, in ancient swords, it is necessary to accurately grasp the heat and material characteristics in order to cast a magic weapon. In the field of medicine, its physical properties are related to the preparation, stability and efficacy of drugs. If a good medicine is prepared, the characteristics of various medicinal materials must be carefully observed. The same is true for this substance. The study of physical properties is the cornerstone of its application.
What are the synthesis methods of D-2-Oxobornane-10-Sulfonic Acid?
D-2-oxo-bornane-10-sulfonic acid is also an important compound in the field of organic synthesis. Although the method of synthesis is not directly described in the ancient book "Tiangong Kaiwu", many synthetic ways can be deduced by analogy with the theory of creation in the book.
First, it can be converted from natural products. Because there are many substances with similar structures in nature, bornaceous natural products are used as starting materials, and can be prepared through exquisite steps such as oxidation and sulfonation. Bornaceous products are naturally available, and their structures are close to the target products. First, a suitable oxidant, such as periodic acid, is used to oxidize the bornaceous to a carbonyl group at a specific position to obtain 2-oxo bornaceous intermediates. After the reaction with sulfonating reagents, such as fuming sulfuric acid, under specific conditions, the sulfonic acid group can be introduced into the 10 position, and the final product is D-2-oxybornane-10-sulfonic acid.
Second, it can also be synthesized by artificially designed route. From simple starting materials, such as dicyclo [2.2.1] heptyl-2-ene, the target structure is constructed through multi-step reaction. First, the functional group is introduced at a suitable position by electrophilic addition and other reactions to construct the basic skeleton. Then the oxidation state is adjusted by oxidation reaction to form a 2-oxo structure. Finally, through the sulfonation reaction, the sulfonic acid group is precisely introduced to achieve the synthesis of the target product. This route requires fine control of the reaction conditions, and the order of reaction, temperature, solvent, etc. of each step are all key. If you are not careful, it will be difficult to obtain pure products.
The process of synthesis is like a craftsman carving utensils. Every step requires careful planning to obtain this important D-2-oxorbornane-10-sulfonic acid, which is used in many fields.
D-2-Oxobornane-10-Sulfonic the price of Acid in the market?
I look at this "D-2 - Oxobornane - 10 - Sulfonic Acid", which is a special compound in organic chemistry. However, it is not easy to know its price in the market.
Recalling the past "Tiangong Kaiwu", although it is detailed in various process products, it may not be involved in such chemically fine products. Today, the price of this compound is influenced by many factors. First, the complexity of its preparation process is the key. If the preparation requires complicated steps, special raw materials and harsh conditions, the cost will be high and the price will not be low. Second, market supply and demand are also important reasons. If there are many people who want it, and the output is limited, the price will rise; if the supply exceeds the demand, the price will fall.
Furthermore, its purity has a great impact on the price. High purity, or more widely used, in scientific research, pharmaceutical and other fields, the demand is more expensive; low purity, or only used for general experimental basic research, the price is relatively low.
Because I do not know many details of the current chemical market, it is difficult to determine its price. However, if you want to know the details, you can consult chemical raw material suppliers, check chemical product trading platforms, or get close to the actual price. In this way, you can have a definite understanding of the price of "D-2 - Oxobornane - 10 - Sulfonic Acid".