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What is the chemical structure of (3Z) -6- (acetamido) -4-oxo-3- [ (4- {[2- (sulfonyloxy) ethyl] sulfonyl} phenyl) hydrazone] -3,4-dihydronaphthalene-2-sulfonate disodium salt
The formula you mentioned is all chemically related symbols and names. It is not easy to solve the chemical structure of this substance. However, since you are ordered to answer, you should try your best to do it.
First analyze the names of the substances in this formula. " (3Z) -6- (isopropoxy) -4-oxo-3- [ (4- {[2- (hydroxyethoxy) isopropyl] hydroxypropyl} benzyl) thiophene] -3,4-dihydroquinoline-2-carboxylic acid dipotassium salt", this is a complex organic compound.
Looking at its structure, it should start with the core skeleton. Among them, "3,4-dihydroquinoline" is a general framework. On this framework, the 6-position is connected with isopropoxy, and the 4-position is an oxo group. The part connected at the 3-position is more complex, including thiophene ring and a series of benzyl, hydroxypropyl and other groups.
Furthermore, this compound finally forms a state of dipotassium salt, when it is caused by the combination of carboxyl and potassium ions. " (3Z) " indicates the existence of double bonds in the molecule and the configuration is Z-type.
The chemical structure of this compound is centered on 3,4-dihydroquinoline, and the substituents are connected in sequence, resulting in this complex state in which the atoms are connected to each other by covalent bonds, forming a unique three-dimensional structure. This structure determines its chemical and physical properties.
What are the uses of (3Z) -6- (acetamido) -4-oxo-3- [ (4- {[2- (sulfonyloxy) ethyl] sulfonyl} phenyl) hydrazone] -3,4-dihydronaphthalene-2-sulfonate disodium salt
What are the uses of (3Z) -6- (ethyl hydroxyl) -4-oxidized-3- [ (4- {[2 - (phenyl) ethyl] phenyl) naphthalene] -3,4-dihydronaphthalene-2-acid dicuprate? The following is answered in the classical Chinese form of "Tiangong Kaiwu":
Now there are (3Z) -6- (ethyl hydroxyl) -4-oxidized-3- [ (4- {[2- (phenyl) ethyl] phenyl) naphthalene] -3,4-dihydronaphthalene-2-acid dicumber salt. Its use is quite wide. In the industry of dyeing and weaving, it can be used as a color enhancer to make the fabric bright and lasting, just like the color of nature. The longer it passes, the more its rhyme will appear.
In the way of doctors, it may have some pharmacological uses. Or it can be used as medicine to cure certain diseases. However, it needs to be explored in detail by doctors to clarify its taste, efficacy and usage, so as to remove diseases and diseases for patients. It should not be used rashly.
In the production of artisans' utensils, it may also have its unique uses. For example, it can be used to treat the surface of the object, or it can enhance the corrosion resistance of the object, make it withstand wind and rain, not easy to decay, prolong the life of the object, and be durable for the long-term use of the world.
In addition, in the case of mulberry farming, it may affect the growth of crops. Or it can be used as a birth-promoting agent to help crops thrive, or to resist diseases and pests, to ensure a bumper harvest of crops, and to help people's lives. However, when using it, be cautious and check its advantages and disadvantages to avoid harming crops and land.
What are the physical properties of (3Z) -6- (acetamido) -4-oxo-3- [ (4- {[2- (sulfonyloxy) ethyl] sulfonyl} phenyl) hydrazone] -3,4-dihydronaphthalene-2-sulfonate disodium salt
(3Z) -6- (ethyl hydroxyl) -4-oxidized-3- [ (4- {[2- (phenolic hydroxyl) ethyl] phenyl} benzyl) naphthalene] -3,4-dioxindene-2-dipotassium ether, which has complex physical properties. It has certain stability and can maintain its inherent form at room temperature and pressure. However, in case of specific chemical reagents or high temperatures, the structure is variable.
In appearance, it is mostly white or off-white crystalline powder, which is delicate and uniform, and has no impurities visible to the naked eye. This form is conducive to storage and transportation, and is convenient for accurate measurement and mixing in subsequent processing.
Unique solubility, good solubility in organic solvents such as ethanol and acetone, poor solubility in water. This characteristic determines its application in different systems. For example, in organic synthesis reactions, it can be fully dissolved with the help of organic solvents to promote efficient reaction.
Melting point, boiling point and other thermal physical parameters are key. The melting point is within a certain range. When this temperature is reached, the substance changes from solid to liquid state, providing a temperature basis for processing. Boiling point information helps to understand its stability and volatility at high temperatures, which is of great significance for separation and purification operations such as distillation and rectification.
In addition, although its density, refractive index and other physical parameters are not often mentioned, they have a profound impact on product quality and performance in specific fields such as optical materials and precision chemicals. Many physical parameters are interrelated and jointly determine the application and performance of the substance in different scenarios.
What is the synthesis method of (3Z) -6- (acetamido) -4-oxo-3- [ (4- {[2- (sulfonyloxy) ethyl] sulfonyl} phenyl) hydrazone] -3,4-dihydronaphthalene-2-sulfonate disodium salt
(This is a method for synthesizing (3Z) -6- (isopropoxy) -4-oxo-3- [[4- {[2- (phenoxy) isopropyl] phenoxy} benzyl] thio] -3,4-dihydropyrimidine-2-ketone disodium salt. What is the method? Please imitate "Tiangong Kaiwu" to answer this question in classical Chinese format)
Want to form (3Z) -6- (isopropoxy) -4-oxo-3- [4- {[2- (phenoxy) isopropyl] phenoxy} benzyl] thio] -3,4-dihydropyrimidine-2-ketone disodium salt, the method is as follows:
Prepare various drugs first, so that isopropoxy, phenoxy, benzyl and other groups are sufficient. Use a suitable device to place the drugs in between. In a stable place, administer the drugs in sequence. At the beginning, at a suitable temperature, mix the isopropoxy group with other substances, stir it slowly, and wait for it to blend.
Then, add the oxygen substitute, pay attention to the heat at this time, do not make it too strong or too warm, causing the drug to change. Continue to add the sulfur-containing agent to phase it with various substances, and the stirring between them should be slow and uniform, so that each substance can blend.
Then add the phenoxy-containing isopropyl and phenoxy-benzyl materials in sequence, and add them with stirring to observe their changes. When its synthesis is asymptotically completed, mix it with the sodium salt of dihydropyrimidine-2-ketone. This step requires caution. The amount of salt and the time of addition are all related to success or failure.
Wait for the fusion of various things, observe its color, smell its gas, and test the degree of its transformation. If it is not suitable, you can fine-tune the heat, time, or add missing medicine.
Repeated operation, careful observation, and careful application can lead to this (3Z) -6- (isopropoxy) -4-oxo-3- [[4- {[2- (phenoxy) isopropyl] phenoxy} benzyl] thio] -3,4-dihydropyrimidine-2-ketone disodium salt. After the medicine is ready, store it properly to prevent the medicinal properties from changing.
What are the precautions for (3Z) -6- (acetamido) -4-oxo-3- [ (4- {[2- (sulfonyloxy) ethyl] sulfonyl} phenyl) hydrazone] -3,4-dihydronaphthalene-2-sulfonate disodium salt during use?
In the process of using (3Z) -6- (ethyl hydroxyl) -4-oxidized-3- [ (4- {[2- (stannoxy) ethyl] tin} phenyl) thiophene] -3,4-dihydrothio-2-di-tert-butyl carboxylate, the following matters should be paid attention to:
First, because of its complex chemical structure, it is necessary to operate accurately when taking and weighing. Because the proportion of each ingredient will have a significant impact on its properties and reaction results, a slight deviation may lead to deviations in the experiment or production. It is necessary to use a high-precision weighing instrument to carefully check the amount taken.
Second, the substance may be potentially harmful to the environment. After use, the disposal of its waste must strictly follow environmental protection regulations. It should not be discharged at will. It should be collected and properly disposed of according to the standard process of chemical waste treatment to avoid pollution to soil, water sources, etc.
Third, due to the fact that it contains a variety of special groups, special attention should be paid in storage. It should be stored in a dry, cool and well-ventilated place, away from fire sources and oxidants. Some groups are chemically active, and improper storage conditions may cause deterioration or dangerous reactions.
Fourth, during operation, personal protective measures should be taken. Wear appropriate protective gloves, goggles and masks to prevent the substance from coming into contact with the skin, eyes or being inhaled into the body, causing damage to human health. Some organic compounds may be irritating or toxic.