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What is the Chinese name of this compound 2 - Oxiraneethanol, 2 - (4 - Methylbenzenesulfonate), (2S) -?
The Chinese name of this compound "2 - Oxiraneethanol, 2 - (4 - Methylbenzenesulfonate), (2S) -" is (2S) -2 - (4 - methylbenzenesulfonate) -2 - ethylene oxide ethanol.
Looking at the naming of this compound, it follows the rules of organic chemistry naming. "Ethylene oxide ethanol", because the molecule has an ethylene oxide structure and is connected with an ethanol group. And "2 - (4 - methylbenzenesulfonate) ", which indicates that there is a substituent such as 4 - methylbenzenesulfonate in the second position of ethanol. The prefix " (2S) -" is used to indicate that the three-dimensional configuration of the carbon atom at position 2 of the compound is S-type. This nomenclature accurately expresses the structure of the compound, allowing chemists to clarify its molecular composition and spatial arrangement. It is of great significance in the research, synthesis and communication of organic chemistry. It can ensure the accuracy of information transmission and avoid research bias due to name confusion.
2 - Oxiraneethanol, 2 - (4 - Methylbenzenesulfonate), (2S) - What are the main chemical properties?
(2S) 2- [ (4-methylbenzenesulfonyl) oxy] methyl ethylene oxide ethanol, this compound has many important chemical properties.
The ethylene oxide structure exists in its molecule, which endows it with high reactivity. The ethylene oxide ring is highly susceptible to attack by nucleophiles and can react with a variety of nucleophiles, such as alcohols, amines, mercaptans, etc., to form a series of derivatives with different functional groups, thereby enabling the construction of complex organic compounds.
The hydroxyl functional group in the molecule has the properties of typical alcohols. It can participate in esterification reactions and react with carboxylic acids or acyl chlorides under suitable conditions to form ester compounds. This is often used in organic synthesis to introduce ester functional groups to change the physical and chemical properties of molecules, such as adjusting the solubility and stability of compounds. At the same time, hydroxyl groups can also be oxidized, and products with different oxidation states such as aldodes, ketones or carboxylic acids can be formed according to the difference in oxidation conditions.
4 -methylbenzenesulfonyloxy is a good leaving group. In nucleophilic substitution reactions, it is easy to leave, so that the compound can undergo substitution reactions with other nucleophilic reagents, and then modify and modify the molecular structure.
The stereochemical structure of this compound is also crucial, and the (2S) configuration determines its potential application in asymmetric synthesis and chiral drug development. In asymmetric catalytic reactions, its chiral structure can be used to induce reactions to selectively generate products of specific configurations, providing an effective way to prepare compounds with single chirality.
What are the common uses of 2 - Oxiraneethanol, 2 - (4 - Methylbenzenesulfonate), (2S) -?
(2S) 2- [ (4-methylbenzenesulfonyl) oxy] methyl ethylene oxide ethanol, which is a compound in organic chemistry. Its common use involves the field of organic synthesis. Although it is not contained in ancient scientific and technological books such as "Tiangong Kaiwu", it is said in the ancient Chinese classical style, or it can be said: "Today there is (2S) 2- [ (4-methylbenzenesulfonyl) oxy] methyl ethylene oxide ethanol, which is often an important raw material or intermediate in the field of organic synthesis. It can react with various reagents through delicate chemical reactions to prepare other complex organic compounds. For the craftsmen of organic synthesis, making good use of this material can make the process of synthesis smoother and produce various organic products to meet the needs of various industries such as medicine and materials. Although ancient books have not recorded in detail, the rise of organic chemistry at this time, the ability of this material is gradually becoming apparent, which helps the prosperity of chemical industry and is used by the world. "
2 - Oxiraneethanol, 2 - (4 - Methylbenzenesulfonate), (2S) - What are the precautions during synthesis?
In the synthesis of (2S) -2-ethylene oxide ethanol-2- (4-methylbenzenesulfonate), you need to pay attention to all things, let me explain in detail.
The quality of the first raw material. Whether the raw material is pure or not depends on the purity of the product and the smooth reaction. Such as 4-methylbenzenesulfonyl chloride and (2S) -ethylene oxide ethanol, if the purity is insufficient, the side reactions will occur, and the product will be mixed and the yield will be low. Select the best material and check the purity as the basis for the synthesis.
The reaction conditions are also critical. If the temperature is high, the reaction will be fast, and then the side reactions may occur; if the temperature is low, the reaction will be slow and take a long time. Synthesis of (2S) -2 -ethylene oxide ethanol-2- (4-methylbenzenesulfonate), temperature control at a suitable range, can promote the main reaction, suppress side reactions. And the nature of the solvent affects the reaction process and product distribution. Choose the right solvent to make the raw materials mutually soluble and help the reaction go smoothly.
catalyst should not be underestimated. It can reduce the reaction energy barrier and increase the reaction speed. However, the amount of catalyst needs to be precisely controlled. If the amount is small, the catalytic effect will be weak; if the amount is large, it may lead to side reactions.
The rules of operation are related to success or failure. The order of feeding affects the initiation and progress of the reaction. If 4-methylbenzenesulfonyl chloride is slowly added to the mixture of (2S) -ethylene oxide ethanol and alkali, local overheating and side reactions can be avoided. Stirring should also be moderate, and the raw materials should be mixed evenly to make the reaction uniform.
Post-treatment is also important. After the reaction is completed, the impurities are removed and purified to obtain a pure product. Extraction, distillation, recrystallization, etc. are selected according to the product and impurity. Careful operation can obtain high purity (2S) -2 -ethylene oxide ethanol-2 - (4-methylbenzenesulfonate).
What is the market outlook for 2 - Oxiraneethanol, 2 - (4 - Methylbenzenesulfonate), (2S) -?
Guanfu (2S) -2-ethylene oxide ethanol-2- (4-methylbenzenesulfonate), the prospect of this product in the market situation is really what everyone is looking forward to.
In today's world, the field of chemical industry is booming. The research of many new materials and new drugs depends on the help of fine chemicals. (2S) -2-ethylene oxide ethanol-2- (4-methylbenzenesulfonate) is quite crucial in organic synthesis. It can be used as an intermediate to introduce various functional groups, and then form a variety of complex compounds.
Since the concept of medicine, the creation of new drugs often requires delicate synthesis steps. This compound may be able to pave the way for the preparation of a certain type of special drug. With its unique structure, it can be compatible with specific biological targets, which is expected to lead to a good drug with excellent efficacy and minimal side effects. And now that the global population is increasing, the types of diseases are also increasing, and the demand for medicine is on the rise. In the field of pharmaceutical synthesis, its prospects may be like the rising sun, and the light is gradually emerging.
As for the field of materials, with the advancement of science and technology, there is a hunger for high-performance materials. (2S) -2-Ethanol-2 - (4-methylbenzenesulfonate) can participate in the synthesis of special polymers, giving materials excellent properties such as high strength, high toughness, and chemical resistance. For example, insulating materials required for electronic equipment and lightweight and high-strength materials used in aerospace may be sublimated as a result.
However, the prospect of market conditions is not completely smooth. To synthesize this compound, the process may need to be refined to reduce costs and yield. And the market competition is fierce, and similar substitutes may also be available. If you want to emerge in the market, you must make great efforts on technological innovation and quality control.
Overall, (2S) -2-ethylene oxide-ethanol-2- (4-methylbenzenesulfonate) in the market prospect, opportunities and challenges coexist. If we can grasp it well and use technology as a cutting edge to break through the thorns in the market, we may be able to bloom in the future and gain a place in the chemical industry.