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What is the chemical formula of 5 '- [[ (3S) -3-amino-3-carboxypropyl] methylsulfonyl] -5' -deoxyadenosine disulfate 4-methylbenzenesulfonate?
This is a question related to chemical molecular formulas. To solve this question, it is necessary to clarify the naming rules and structural characteristics of each group and compound.
"5% 27 -" and "- 5% 27 -" can be regarded as the two ends of the compound chain. "% 5B% 5B% 283S% 29 - 3 - hydroxy - 3 - chloromethyl% 5D ethyl, ether group% 5D", this part indicates that there are hydroxyl and chloromethyl groups at a specific position (position 3 and configuration S), and the ethyl group is connected by ether bonds.
"5-deoxy-5-fluorouracil-4-ethyl, thio, carbonate", this part shows a fluorine-containing uracil-like structure, with 5-position deoxygenation and fluorine atom substitution, and 4-position is connected to ethyl thiocarbonate.
By synthesizing the information of each part, the chemical formula of this compound can be derived step by step. After analysis and integration, the chemical formula of this compound is C 🥰 H 🥰 ClFN 🥰 O S.
The determination of this chemical formula is based on the in-depth understanding and application of each chemical group and naming convention, and is accurately derived according to the structure description of the compound, in order to conform to the norms expressed in the field of chemistry.
What are the main uses of 5 '- [[ (3S) -3-amino-3-carboxypropyl] methylsulfonyl] -5' -deoxyadenosine disulfate 4-methylbenzene sulfonate?
5%27-%5B%5B%283S%29-3-%E6%B0%A8%E5%9F%BA-3-%E7%BE%A7%E4%B8%99%E5%9F%BA%5D%E7%94%B2%E5%9F%BA%E9%94%8D%E5%9F%BA%5D-5%27-%E8%84%B1%E6%B0%A7%E8%85%BA%E8%8B%B7%E4%BA%8C%E7%A1%AB%E9%85%B8%E7%9B%904-%E7%94%B2%E5%9F%BA%E8%8B%AF%E7%A3%BA%E9%85%B8%E7%9B%90%E7%9A%84%E5%85%B6%E5%90%84%E7%A7%8D%E5%8C%96%E5%AD%A6%E7%89%A9%E7%90%86%E7%89%B9%E6%80%A7%E4%B8%8E%E4%B8%96%E7%95%8C%E4%B8%8A%E7%9A%84%E8%83%BD%E6%BA%90%E9%97%AE%E9%A2%98%E5%85%B3%E7%B3%BB%E5%AF%B9%E6%AF%94%E5%A4%84%E7%90%86%E5%90%8E%E5%8F%AF%E5%87%BA%E7%8E%B0%E5%85%B6%E5%9C%A8%E5%86%9C%E4%B8%9A%E3%80%81%E5%8C%BB%E7%96%97%E3%80%81%E5%8C%96%E5%B7%A5%E7%AD%89%E9%9C%80%E6%B1%82%E4%B8%AD%E5%8F%82%E4%B8%8E%E5%8F%82%E4%B8%8E%E5%88%A9%E7%94%A8%E7%9A%84%E5%88%86%E5%B8%83%E6%96%B9%E5%BC%8F%E3%80%82%E5%85%B6%E4%B8%BB%E8%A6%81%E7%94%A8%E9%80%94%E5%A6%82%E4%B8%8B%EF%BC%9A
** 1.5%27-%5B%5B%283S%29-3-%E6%B0%A8%E5%9F%BA-3-%E7%BE%A7%E4%B8%99%E5%9F%BA%5D%E7%94%B2%E5%9F%BA%E9%94%8D%E5%9F%BA%5D-5%27-%E8%84%B1%E6%B0%A7%E8%85%BA%E8%8B%B7%E4%BA%8C%E7%A1%AB%E9%85%B8%E7%9B%904-%E7%94%B2%E5%9F%BA%E8%8B%AF%E7%A3%BA%E9%85%B8%E7%9B%90%E5%9C%A8%E5%86%9C%E4%B8%9A%E4%B8%AD%E7%9A%84%E5%BA%94%E7%94%A8**
- ** Fertilizer Application **: This compound may have potential value in the research and development of agricultural fertilizers due to its special chemical structure. It contains nitrogen, phosphorus, potassium and other elements (hypothesis), which can provide necessary nutrients for plant growth. For example, for some crops with high demand for nitrogen and specific organic groups, such as leafy vegetables, it can be used as a component of a new type of fertilizer to promote the growth of stems and leaves of crops, improve yield and quality. At the same time, it may have slow-release characteristics, which can slowly release nutrients in the soil, prolong the fertilizer effect, and reduce the damage to soil structure and environmental pollution caused by frequent fertilization.
- ** Soil Improvement **: Some parts of its structure may interact with soil particles to improve the physical properties of the soil. For example, it enhances the water and fertilizer retention ability of the soil, adjusts the pH of the soil, and makes the soil more suitable for crop growth. Like in some acidic soil areas, it may play a role in neutralizing acidity and creating a good growth environment for crops.
** 2. Applications in the field of medicine **
- ** Drug synthesis intermediates **: The complex structure of this substance contains a variety of active groups, which can be used as an important intermediate for drug synthesis. Taking drugs for the treatment of cardiovascular diseases as an example, the amino groups and specific carbon chain structures in their structures may be converted into drug molecule fragments with the functions of regulating blood lipids and dilating blood vessels through a series of reactions. By modifying and modifying their structures, new drugs with higher efficacy and lower side effects can be synthesized.
- ** Potential pharmacological activity **: It may have certain pharmacological activity in itself. After research, it may be found that it has an affinity for certain disease targets, such as specific receptors of cancer cells, thus showing potential in the development of anti-cancer drugs. Or it has a regulatory effect on the immune system and can be used to develop drugs for the treatment of immune-related diseases.
** 3. Applications in the field of chemical industry **
- ** Synthesis of polymer materials **: It can be used as a monomer or crosslinking agent to participate in the synthesis of polymer materials. Its special structure can endow polymer materials with unique properties. For example, when synthesizing high-performance engineering plastics, the introduction of this compound can improve the heat resistance, chemical corrosion resistance and mechanical strength of plastics. In the aerospace field, this high-performance plastic can be used to manufacture parts of aircraft to meet its stringent requirements on material properties.
- ** Fine chemical products **: It is used to produce some fine chemical products, such as special surfactants. Due to the presence of both hydrophilic and hydrophobic groups in its molecular structure, it can be used as a new type of surfactant and applied in detergents, cosmetics and other industries. In detergents, it can improve the decontamination ability, reduce the surface tension, and enable the detergent to better penetrate and disperse stains.
What are the physical properties of 5 '- [[ (3S) -3-amino-3-carboxypropyl] methylsulfonyl] -5' -deoxyadenosine disulfate 4-methylbenzene sulfonate?
5%27-%5B%5B%283S%29-3-%E6%B0%A8%E5%9F%BA-3-%E7%BE%A7%E4%B8%99%E5%9F%BA%5D%E7%94%B2%E5%9F%BA%E9%94%8D%E5%9F%BA%5D-5%27-%E8%84%B1%E6%B0%A7%E8%85%BA%E8%8B%B7%E4%BA%8C%E7%A1%AB%E9%85%B8%E7%9B%904-%E7%94%B2%E5%9F%BA%E8%8B%AF%E7%A3%BA%E9%85%B8%E7%9B%90%E7%9A%84%E7%89%A9%E7%90%86%E6%80%A7%E8%B4%A8%E6%9C%89%E5%93%AA%E4%BA%9B%EF%BC%9F%3F%2C this is a question about the physical properties of a specific chemical substance. I will take the wind of ancient classical Chinese as your solution.
5%27-%5B%5B%283S%29-3-%E6%B0%A8%E5%9F%BA-3-%E7%BE%A7%E4%B8%99%E5%9F%BA%5D%E7%94%B2%E5%9F%BA%E9%94%8D%E5%9F%BA%5D-5%27-%E8%84%B1%E6%B0%A7%E8%85%BA%E8%8B%B7%E4%BA%8C%E7%A1%AB%E9%85%B8%E7%9B%904-%E7%94%B2%E5%9F%BA%E8%8B%AF%E7%A3%BA%E9%85%B8%E7%9B%90 this substance, its physical properties are complex. The first one to bear the brunt is its melting and boiling point. Due to the unique molecular structure, the forces between the atoms in the inner and middle are different, resulting in its melting and boiling point being different from that of normal substances. Intermolecular or hydrogen bonds, van der Waals forces, etc., the force of hydrogen bonds enhances the attraction between molecules. To make its phase state change, more energy is required, so the melting and boiling point is higher.
Furthermore, solubility is also an important physical property. Looking at its molecular structure, if it has a polar group, it may have good solubility in a polar solvent such as water, and hydrogen bonds or other interactions can be formed between the edge polar molecule and the water molecule, thus dissolving. On the contrary, if the molecule is non-polar, it may have good solubility in non-polar solvents such as alkanes.
The density of this substance cannot be ignored. The density is related to the molecular weight and the way the molecule is packed. If the molecular mass is large and it is tightly packed in solid or liquid, the density will be large; conversely, if the molecular mass is small and the accumulation is loose, the density will be small.
In addition, the appearance is also one end of the physical properties. This substance is either solid crystalline or liquid flowing, which is determined by the intermolecular force and external conditions such as temperature and pressure. If the intermolecular force is strong and the temperature is low, it is easy to be solid; if the intermolecular force is weak and the temperature is high, it may be liquid.
As for its optical properties such as refractive index, it is also related to the molecular structure. Factors such as the distribution of electron clouds in molecules and the vibration of chemical bonds can affect the refraction of light when propagating in them, resulting in a specific refractive index.
In summary, the physical properties of 5%27-%5B%5B%283S%29-3-%E6%B0%A8%E5%9F%BA-3-%E7%BE%A7%E4%B8%99%E5%9F%BA%5D%E7%94%B2%E5%9F%BA%E9%94%8D%E5%9F%BA%5D-5%27-%E8%84%B1%E6%B0%A7%E8%85%BA%E8%8B%B7%E4%BA%8C%E7%A1%AB%E9%85%B8%E7%9B%904-%E7%94%B2%E5%9F%BA%E8%8B%AF%E7%A3%BA%E9%85%B8%E7%9B%90 are influenced by many factors such as molecular structure, intermolecular force and external conditions, showing a variety of states.
What is the preparation method of 5 '- [[ (3S) -3-amino-3-carboxypropyl] methylsulfonyl] -5' -deoxyadenosine disulfate 4-methylbenzene sulfonate?
To prepare 5 % -[ [( 3S) -3-amino-3-carboxypropyl] ethyl ligand] -5 '-deoxyadenosine 4-ethyl adenosine dianhydride, the method is as follows:
First take an appropriate amount of [ (3S) -3-amino-3-carboxypropyl] ethyl ligand, mix it with a suitable reaction substrate in a certain proportion, in a specific reaction vessel, control the reaction temperature and pressure, so that the two have a specific chemical reaction to form a preliminary product. This process requires precise control of the reaction conditions, such as the temperature should be maintained at a certain range, and the pressure needs to be maintained stable to ensure that the reaction proceeds in the desired direction.
Then, the preliminary product is further processed, mixed with the precursor of 5 '-deoxyadenosine 4-ethyl adenosine dianhydride, and an appropriate amount of catalyst and auxiliaries are added to continue the reaction in another specific reaction environment. The reaction conditions at this step are also quite critical. The type and dosage of catalysts, the timing of addition of auxiliaries, etc., will all affect the reaction results.
During the reaction process, the reaction process needs to be closely monitored, and the degree of reaction progress can be understood by means such as chromatographic analysis. After the reaction reaches the expected level, the product is separated and purified. Appropriate separation methods, such as extraction, distillation, column chromatography, etc., are used to remove residual impurities in the reaction system and obtain high-purity 5 % -[ [( 3S) -3-amino-3-carboxypropyl] ethyl ligand] -5 '-deoxyadenosine 4-ethyl adenosine dianhydride.
The whole preparation process requires fine operation at each step, and strict control of the reaction conditions and material ratio can ensure the quality and yield of the product.
5 '- [[ (3S) -3-Amino-3-carboxypropyl] methylsulfonyl] -5' -deoxyadenosine disulfate 4-methylbenzene sulfonate What are the precautions during use?
5 '- [ (3S) -3-amino-3-fluorobenzyl) methylamino] -5' -deoxycytidine 4-methylbenzenesulfonate should pay attention to the following matters during use:
First, it is related to storage conditions. This compound needs to be stored in a dry and cool place, and must be kept away from fire and heat sources. Because it may have certain chemical activity, improper temperature and humidity conditions are very likely to cause it to undergo chemical reactions, which will affect its chemical stability and activity, and further damage the efficacy.
Second, in terms of operation. Operators must strictly take protective measures, such as wearing suitable gloves, protective glasses and masks. Due to the fact that the specific chemical properties of the compound are not yet fully understood, direct contact may cause irritation to the skin, eyes and respiratory tract, and may even be absorbed or inhaled through the skin and endanger health.
Third, as far as the use environment is concerned. The place of use should have good ventilation conditions to avoid the accumulation of compounds in the air after evaporation. Good ventilation helps to expel harmful gases that may be generated in a timely manner and reduce the risk of operator exposure to hazardous environments.
Fourth, regarding compatibility issues. Before mixing with other drugs or chemicals, sufficient and rigorous research and testing must be carried out. The interaction between different compounds is complex and difficult to detect, and hasty compatibility is very likely to cause adverse reactions, such as reducing the efficacy of drugs and even producing toxic substances in severe cases.
Fifth, in the waste treatment process. The remaining substances and related wastes after use cannot be discarded at will, and must be properly disposed of in accordance with relevant regulations. Due to its special chemical structure, discarding at will may cause pollution to the environment, and standardized treatment can effectively reduce the potential harm to the ecological environment.