As a leading 9H-Fluorene-9-Carboxamide, N-(2,2,2-Trifluoroethyl)-9-[4-[4-[[[4'-(Trifluoromethyl)[1,1'-Biphenyl]-2-Yl]Car Bonyl]Amino]-1-Piperidinyl]Butyl]-, Methanesulfonate supplier, we deliver high-quality products across diverse grades to meet evolving needs, empowering global customers with safe, efficient, and compliant chemical solutions.
9H-Fluorene-9-Carboxamide, N- (2,2,2-Trifluoroethyl) -9- [4- [4- [[[4 '- (Trifluoromethyl) [1,1' -Biphenyl] -2-Yl] Carbonyl] Amino] -1-Piperidinyl] Butyl] -, What is the chemical structure of Methanesulfonate
This is a description of an organic compound. According to its name, its chemical structure can be gradually analyzed. "9H - Fluorene - 9 - Carboxamide", showing that its core structure is fluorene - 9 - formamide, and the 9-position carbon of fluorene is connected to a formamide group. "N - (2,2,2 - Trifluoroethyl) ", the nitrogen atom of epiformamide is connected to 2,2,2 - trifluoroethyl. " 9 - [4 - [4 - [[4 '- (Trifluoromethyl) [1,1' - Biphenyl] - 2 - Yl] Carbonyl] Amino] - 1 - Piperidinyl] Butyl] ", indicating that the 9-position carbon of fluorene is also connected to a butyl containing a specific substituent, which is connected with 4 - [[4 '- (trifluoromethyl) [1,1' -biphenyl] - 2 - yl] carbonyl] amino] - 1 - piperidinyl." Methanesulfonate ", the compound is known to exist in the form of methanesulfonate.
In summary, the chemical structure of this compound is based on fluorene-9-formamide as the core, nitrogen atom is connected to trifluoroethyl, and carbon at 9 position is connected to butyl containing complex substituents, and the whole is formed into methylsulfonate. The complexity of its structure highlights the delicate and variable structure of organic chemistry, and the interaction of various partial groups may affect the physical, chemical and biological activities of the compound.
9H-Fluorene-9-Carboxamide, N- (2,2,2-Trifluoroethyl) -9- [4- [4- [[[4 '- (Trifluoromethyl) [1,1' -Biphenyl] -2-Yl] Carbonyl] Amino] -1-Piperidinyl] Butyl] -, What are the main uses of Methanesulfonate
9H-fluorene-9-formamide, N- (2,2,2-trifluoroethyl) -9- [4- [4- [[4 '- (trifluoromethyl) [1,1' -biphenyl] -2-yl] carbonyl] amino] -1 -piperidinyl] butyl] -, methanesulfonate, this chemical substance has a wide range of uses.
In the field of pharmaceutical development, it is often used as a key intermediate to assist in the synthesis of drugs with specific physiological activities. For example, when developing innovative drugs for specific diseases, using this as a starting material, through a series of chemical reactions, complex molecular structures with precise pharmacological effects can be constructed, or specific targets for certain diseases can be effective, laying the foundation for the birth of new therapeutic drugs.
In the field of materials science, due to its unique chemical structure and properties, it may be used to prepare functional materials. For example, after special treatment and modification, it may become an important component of optoelectronic materials. It is used in optoelectronic devices such as organic Light Emitting Diodes (OLEDs), giving materials special optical and electrical properties, and improving the luminous efficiency and stability of devices.
In scientific research, it is an important experimental reagent. Scientists use it to conduct various basic research, explore its chemical reaction characteristics, interaction mechanisms with other substances, etc., so as to expand the boundaries of chemical knowledge and provide basis and support for theoretical development in related fields.
To sum up, this chemical substance plays an important role in many key fields and is of great significance in promoting the development of industries such as medicine, materials and scientific research.
9H-Fluorene-9-Carboxamide, N- (2,2,2-Trifluoroethyl) -9- [4- [4- [[[4 '- (Trifluoromethyl) [1,1' -Biphenyl] -2-Yl] Carbonyl] Amino] -1-Piperidinyl] Butyl] -, Methanesulfonate What is the safety of
This substance is a 9H-fluorene-9-formamide derivative with a long and complicated chemical name. Its safety considerations are quite critical, so let me tell you one by one.
In terms of toxicity, due to the structure of the substance containing many special groups, such as trifluoroethyl, trifluoromethyl, etc., these fluorinated groups may affect its metabolism and toxicity in organisms. In animal experiments, it may have toxic effects on organs such as liver and kidneys, affecting their normal physiological functions. For example, after fluorinated organic compounds enter the organism, they may interfere with the enzyme activities in cells, resulting in metabolic disorders and damage to cells.
When talking about environmental effects, their fate in the environment needs to be carefully investigated. In view of its complex structure, it is difficult to degrade or exist naturally. If it enters the water body, soil environment, or remains for a long time, it will affect the ecosystem. Or toxic to aquatic organisms and soil microorganisms, disrupting the ecological balance. Like some refractory organic compounds, it will accumulate in organisms and pass along the food chain, causing greater harm to advanced organisms.
From the perspective of chemical stability, the amide bond, piperidinyl group and other parts of the structure may undergo hydrolysis, isomerization and other reactions under different acid and base conditions. In acidic or alkaline environments, its chemical structure may change and generate new substances, which not only affects its own safety, but also the toxicity and environmental behavior of the new products are unknown.
And this substance is in the form of methanesulfonate, and methanesulfonate ions may affect its physicochemical properties and safety. During storage and use, it is necessary to pay attention to its interaction with other substances to avoid dangerous chemical reactions caused by improper mixing.
In general, this substance has latent risks in terms of toxicity, environmental impact and chemical stability due to its unique chemical structure. In the process of research and development, production and use, it is necessary to treat it with caution and conduct adequate safety assessments to ensure that there is no significant harm to human health and the environment.
9H-Fluorene-9-Carboxamide, N- (2,2,2-Trifluoroethyl) -9- [4- [4- [[[4 '- (Trifluoromethyl) [1,1' -Biphenyl] -2-Yl] Carbonyl] Amino] -1-Piperidinyl] Butyl] -, Methanesulfonate What is the market price?
I am looking at your words, and I am inquiring about the market price of "9H - Fluorene - 9 - Carboxamide, N - (2,2,2 - Trifluoroethyl) - 9 - [4 - [[[4 '- (Trifluoromethyl) [1,1' - Biphenyl] - 2 - Yl] Carbonyl] Amino] - 1 - Piperidinyl] Butyl] -, Methanesulfonate". However, this product is not familiar to me and is not used in its field, so it is difficult to know its exact price.
Or this product is used in pharmaceutical research and development, if so, its price is affected by many factors. The price of raw materials fluctuates. If the special chemical raw materials required for preparation are scarce or expensive, the price of this material will increase. The simplicity of the synthesis process is also the key. If multiple complex reactions and harsh reaction conditions are required, more manpower and material resources will be required, and the price will rise.
Or for other fields such as materials science, the balance between market demand and supply greatly affects the price. If demand is strong and supply is limited, the price must be high; on the contrary, if the market is saturated and the supply is sufficient, the price will naturally decrease.
Furthermore, different suppliers have different pricing strategies, and factors such as brand reputation and product purity all make prices different.
Although I want to answer you in detail, I lack more information, and it is difficult to determine its price. I hope you will complete the relevant information of this item, such as application field, quality requirements, etc., so that I can understand it more accurately for you.
9H-Fluorene-9-Carboxamide, N- (2,2,2-Trifluoroethyl) -9- [4- [4- [[[4 '- (Trifluoromethyl) [1,1' -Biphenyl] -2-Yl] Carbonyl] Amino] -1-Piperidinyl] Butyl] -, Methanesulfonate What is the production process?
9H - fluorene - 9 - formamide, N- (2,2,2 - trifluoroethyl) - 9 - [4 - [4 - [[[4 '- (trifluoromethyl) [1,1' -biphenyl] - 2 - yl] carbonyl] amino] - 1 - piperidinyl] butyl] -, methanesulfonate production process, just like the ancient processing, need to follow the fine procedures.
When starting, when carefully preparing all kinds of raw materials. Select pure 9H-fluorene-9-carboxylic acid and 2,2,2-trifluoroethylamine, both of which must reach extremely high purity. The existence of impurities, such as dust in jade, will affect the quality of the product. The two are slowly blended in a specific solvent with the help of a suitable temperature and catalyst, just like ancient alchemy, and the temperature and formula must be accurate. When reacting, pay close attention to the fluctuation of temperature and pressure. If there is a slight difference, all previous efforts will be in vain.
After the first step of reaction is completed, the product is like a rough jade that has just appeared in its embryonic form, and needs to be carved. Add the 4- [4- [[4 '- (trifluoromethyl) [1,1' -biphenyl] -2-yl] carbonyl] amino] -1-piperidinyl] butyl reagent containing a specific structure to create a suitable reaction environment again. Either heat up, cool down, or adjust the pH, so that the molecules fit each other, like mortise and tenon, tight seam. In this process, the nature of the solvent and the length of the reaction time are all key.
When the main structure is completed, the last step is to react with methanesulfonic acid to form methanesulfonate. This step should not be underestimated, controlling the amount of methanesulfonic acid and the rate of reaction, so that the product crystallizes and precipitates, just like condensing the essence from chaos. Then, through separation and purification, impurities such as unreacted raw materials and by-products are removed. Or use filtration methods, such as sifting sand to extract gold; or use recrystallization techniques, to make the product more pure, and finally obtain this fine compound of high quality, like a treasure carefully carved by a skilled craftsman.