What is the chemical structure of 5-Butyl-2-Ethylamino-6-Methylpyrimidin-4-Yldimethylsulfamate?
This is the naming of an organic compound. To deduce its chemical structure according to its name, it needs to be analyzed according to the naming rules of organic chemistry. "5 - Butyl - 2 - Ethylamino - 6 - Methylpyrimidin - 4 - Yldimethylsulfamate", first looking at "pyrimidin", it can be seen that its core is a pyrimidine ring, which is a six-membered heterocycle containing two nitrogen atoms. At position 4 of the pyrimidine ring, there is a "dimethylsulfamate" group, which contains atoms such as sulfur and oxygen, and has a structure of -SO _ 2 N (CH) _ 2. In this way, the chemical structure of this compound is gradually constructed according to the naming rules, and the groups are connected to the corresponding positions of the pyrimidine ring in sequence, thus obtaining the complete chemical structure.
What are the main uses of 5-Butyl-2-Ethylamino-6-Methylpyrimidin-4-Yldimethylsulfamate?
5-Butyl-2-ethylamino-6-methylpyrimidine-4-methyldimethylaminosulfonate has a wide range of uses. In the field of agriculture, it is often used as a herbicide. It can precisely inhibit the growth of weeds, but slightly damage crops. This is because of its unique chemical structure, which can interfere with specific physiological processes of weeds, such as inhibiting the activity of key enzymes in weed photosynthesis, making weeds unable to produce nutrients normally, and then wilt and die. And it degrades quickly in soil, has little residue, and is environmentally friendly, so it is favored by farmers and agricultural producers.
In the field of scientific research, this compound is also an important research object. By studying its mechanism of action, chemical properties, and interaction with biomolecules, researchers can explore more potential applications. For example, in-depth exploration of its binding mode with specific proteins or enzymes may inspire new pesticide and pharmaceutical research and development ideas. Furthermore, studying its stability and degradation pathways under different environmental conditions is of great significance for understanding its ecological impact.
In industrial production, the research on its synthesis process is also the focus. Optimizing synthesis methods, increasing yield and reducing costs are the goals pursued by the chemical industry. By improving reaction conditions and exploring new catalysts or synthesis routes, it is expected to achieve more efficient and green production processes and promote the development of related industries. In conclusion, 5-butyl-2-ethylamino-6-methylpyrimidine-4-yldimethylaminosulfonate has important value and application prospects in many fields such as agriculture, scientific research, and industry.
5-Butyl-2-Ethylamino-6-Methylpyrimidin-4-Yldimethylsulfamate what are the precautions during use?
5-Butyl-2-ethylamino-6-methylpyrimidine-4-methyldimethylaminosulfonate. When using this substance, pay attention and do not neglect it.
The first priority is safety. This substance may be potentially harmful. When contacting, appropriate protective equipment must be worn, such as gloves, goggles and protective clothing, to prevent it from coming into contact with the skin and eyes, and to prevent inhalation of its dust or mist. In case of inadvertent contact, rinse with plenty of water immediately and seek medical attention quickly.
Furthermore, when storing, choose a cool, dry and well-ventilated place, away from fire and heat sources, to prevent danger. It should also be stored separately from oxidants, acids, etc., and must not be mixed to avoid reactions.
During use, operate strictly according to specifications. Weighing accurately, do not exceed the required dose, avoid waste, and prevent adverse consequences from overuse. After use, properly clean up the utensils and sites. Residues should not be discarded at will, and disposed of in accordance with relevant regulations to avoid polluting the environment.
In addition, relevant operators must be professionally trained to be familiar with the nature, hazards and emergency treatment methods of this substance. Emergency equipment and appropriate protective equipment should be prepared in the operation room, so that in the event of an emergency, they can respond quickly. Only in this way, when using 5-butyl-2-ethylamino-6-methylpyrimidine-4-yldimethylaminosulfonate, can the purpose of safety and effectiveness be achieved.
What are the physical and chemical properties of 5-Butyl-2-Ethylamino-6-Methylpyrimidin-4-Yldimethylsulfamate?
5-Butyl-2-ethylamino-6-methylpyrimidine-4-methyldimethylaminosulfonate is an organic compound. Its physicochemical properties are of great research value.
Looking at its properties, it is mostly solid or crystalline under normal conditions, and the texture is relatively dense. This is due to the intermolecular force. Its color may be white to light yellow, and the color is pure or not, or it is related to purity.
In terms of solubility, the compound behaves differently in organic solvents. In polar organic solvents, such as ethanol and acetone, it may have a certain solubility. This is because polar solvents and compound molecules can form hydrogen bonds, dipole-dipole interactions, etc., to help them dissolve. In non-polar solvents, such as n-hexane, the solubility is relatively low, because the intermolecular forces between the two are weak.
Melting point is also one of the important physical and chemical properties. Its melting point may be within a certain range, and this temperature range is determined by the molecular structure. The strength and distribution of intermolecular forces, such as van der Waals forces, hydrogen bonds, etc., determine the energy required to destroy the lattice structure, which in turn affects the melting point. When heated to this temperature range, the compound will change from solid to liquid.
In terms of stability, the compound may be relatively stable at room temperature and pressure without the influence of special chemical reagents or conditions. However, under extreme conditions such as high temperature, strong acid, and strong base, its structure may change. High temperature may cause the thermal movement of molecules to intensify, causing chemical bond breakage; strong acid and strong base may react with some functional groups in the compound, causing its structure to change.
In addition, its density, refractive index and other properties are also affected by molecular structure and constituent atoms. Density reflects the mass distribution of a molecule in a certain volume, and refractive index is related to the ability of the molecule to refract light, both of which are important parameters for characterizing the properties of the compound.
What are 5-Butyl-2-Ethylamino-6-Methylpyrimidin-4-Yldimethylsulfamate synthesis methods?
The synthesis method of 5-butyl-2-ethylamino-6-methylpyrimidine-4-methyldimethylaminosulfonate is ancient and has various methods. It is described in detail below.
First, it can be started from pyrimidine compounds. First take the appropriate methyl pyrimidine, in a specific reactor, with fine temperature control, accompanied by a suitable catalyst, so that it meets the butylation reagent. During the reaction, pay attention to the pH of the reaction system, and fine-tune it in time to make the reaction proceed in the direction of generating 5-butyl-6-methylpyrimidine. This step takes a long time, depending on the characteristics of raw materials and reaction conditions. After the reaction is completed, the product is purified by extraction, distillation, etc.
In the second case, the obtained 5-butyl-6-methylpyrimidine is introduced into the ethylamino group. In this process, an excellent reaction solvent is selected, ethylamine reagents are added, and additives that can promote the reaction are added. The reaction is carried out under specific pressure and temperature, during which the reaction process is closely monitored, so that the ethylamino group is precisely connected to the target position. After the reaction is completed, the intermediate product containing ethylamino is obtained through separation, washing and other processes.
Furthermore, to form the final 5-butyl-2-ethylamino-6-methylpyrimidine-4-yldimethylaminosulfonate, the above intermediate product needs to interact with the dimethylaminosulfonate reagent. In a clean reaction vessel, mix the two in proportion and drive the reaction according to a specific reaction program. Among these, the polarity of the solvent and the reaction time are the key. After the reaction is completed, the product is purified by column chromatography, recrystallization and other exquisite techniques to obtain high purity 5-butyl-2-ethylamino-6-methylpyrimidine-4-methyl dimethylaminosulfonate.
The synthesis method requires careful attention in each step. The control of reaction conditions, the balance of raw material proportions, and the essence of product purification are all related to success or failure, which is the key to synthesizing this compound.