2 4 2 2s 2 Hydroxy 3 2 Thiophen 2 Ylphenoxy Propyl Amino 2 Methylpropyl Phenoxy Pyridine 3 Carbonitrile
pyridine pyrrole pyrazine piperidine piperazine

2-[4-[2-[[(2S)-2-hydroxy-3-(2-thiophen-2-ylphenoxy)propyl]amino]-2-methylpropyl]phenoxy]pyridine-3-carbonitrile

    Specifications

    HS Code

    653183

    Chemical Name 2-[4-[2-[[(2S)-2-hydroxy-3-(2-thiophen-2-ylphenoxy)propyl]amino]-2-methylpropyl]phenoxy]pyridine-3-carbonitrile

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    Frequently Asked Questions

    As a leading 2-[4-[2-[[(2S)-2-hydroxy-3-(2-thiophen-2-ylphenoxy)propyl]amino]-2-methylpropyl]phenoxy]pyridine-3-carbonitrile supplier, we deliver high-quality products across diverse grades to meet evolving needs, empowering global customers with safe, efficient, and compliant chemical solutions.

    What is the chemical structure of the product "2- [4- [2- [[ (2S) -2-hydroxy-3- (2-thiophen-2-ylphenoxy) propyl] amino] -2-methylpropyl] phenoxy] pyridine-3-carbonitrile"?
    This is the name of the organic compound. According to the ancient expression of "Tiangong Kaiwu", its chemical structure is as follows:
    The name of this compound is "2- [4- [2- [[ (2S) -2 -hydroxy-3- (2 -thiophene-2-ylphenoxy) propyl] amino] -2 -methylpropyl] phenoxy] pyridine-3-formonitrile". Looking at the name, it can be gradually disassembled to clarify its structure.
    "Pyridine-3-formonitrile", which is the core skeleton of this compound, the pyridine ring is a nitrogen-containing hexaadic ring, and there is a formonitrile group attached to the third position of the pyridine ring, that is, the -CN group.
    Then look at the part "2 - [4 - [2 - [ (2S) -2 -hydroxy-3- (2 -thiophene-2 -ylphenoxy) propyl] amino] -2 -methylpropyl] phenoxy]", which is the substituent at the 2-position of the pyridine ring. Among them, "phenoxy" indicates that it is connected to the second position of the pyridine ring with the structure connected to the benzene ring and oxygen; "4 - [2 - [[ (2S) -2 - hydroxy - 3 - (2 - thiophene - 2 - phenoxy) propyl] amino] - 2 - methylpropyl]" is a complex substituent connected to the fourth position of the phenyl ring in the phenoxy group. In this substituent, "2-methylpropyl" indicates a propyl structure containing three carbons and a methyl group at the second position; "[ (2S) -2-hydroxy-3- (2-thiophene-2-ylphenoxy) propyl] amino" means that on the basis of the above structure, a chiral (S configuration) propyl group is connected by an amino group. The propyl group has a hydroxyl group at the second position and a phenoxy group at the third position.
    In this way, the chemical structure of the compound can be clearly identified after layer-by-layer analysis.
    What are the main uses of 2- [4- [2- [[ (2S) -2-hydroxy-3- (2-thiophen-2-ylphenoxy) propyl] amino] -2-methylpropyl] phenoxy] pyridine-3-carbonitrile?
    "2 - [4 - [2 - [[ (2S) -2 -hydroxy-3- (2-thiophene-2-phenoxy) propyl] amino] -2-methylpropyl] phenoxy] pyridine-3-formonitrile" This substance has a wide range of main uses. In the field of medicine, or as a key intermediate for the synthesis of new drugs. With its unique chemical structure, it may play a key building block role in the development of drugs for specific diseases, helping to design and prepare compounds with specific pharmacological activities, or helping to overcome some difficult diseases.
    In the chemical industry, it can be used as a starting material for the synthesis of functional materials. Through chemical reaction modification, materials can be endowed with unique properties, such as improving material stability, solubility, or introducing special optical and electrical properties, providing the possibility for the upgrading and innovation of chemical products.
    In terms of scientific research and exploration, it is an ideal model molecule for studying the methodology and reaction mechanism of organic synthesis. Researchers can conduct various reactions on it to gain in-depth insight into the laws of organic reactions, develop novel synthesis paths, and promote the progress and development of organic chemistry. This compound has potential important application value in many fields such as medicine, chemical industry, and scientific research, and is an important object of chemical research and application.
    What is the synthesis method of 2- [4- [2- [[ (2S) -2-hydroxy-3- (2-thiophen-2-ylphenoxy) propyl] amino] -2-methylpropyl] phenoxy] pyridine-3-carbonitrile?
    To obtain "2 - [4 - [2 - [[ (2S) -2 - hydroxy - 3 - (2 - thiophene - 2 - phenoxy) propyl] amino] - 2 - methylpropyl] phenoxy] pyridine - 3 - formonitrile" synthesis method, can follow the following steps.
    First with suitable starting materials, such as pyridine, benzene and thiophene derivatives with corresponding substituents as groups. First, under suitable reaction conditions, such as in a suitable organic solvent, appropriate bases and catalysts are added to the compound containing pyridine structure and phenoxy reagent with specific substitutions to form a pyridine-phenoxy connection structure through nucleophilic substitution reaction. This process requires precise regulation of reaction temperature, time and reactant ratio to obtain a high yield and purity intermediate product.
    Then, the resulting intermediate product is reacted with a propylamine derivative containing thiophene-2-ylphenoxy. This reaction also needs to be in a specific solvent system, under mild or appropriate heating conditions, with the help of catalysts, through the reaction of amine groups with specific functional groups, to construct [ (2S) -2-hydroxy-3- (2-thiophene-2-ylphenoxy) propyl] amino moiety.
    In the synthesis, each step requires the separation and purification of the product, and classic methods such as column chromatography and recrystallization can be used. And each step of the reaction should be carefully monitored. By means of thin-layer chromatography, mass spectrometry, and nuclear magnetic resonance, the reaction proceeds according to the expected path and the product structure is correct.
    After ingenious design and precise control of the multi-step reaction, the target product "2 - [4 - [2 - [[ (2S) -2 - hydroxy - 3 - (2 - thiophene - 2 - phenoxy) propyl] amino] -2 - methylpropyl] phenoxy] pyridine - 3 - formonitrile" can be obtained. However, in actual operation, the reaction conditions need to be optimized and adjusted according to the specific raw material characteristics and reaction equipment to achieve the best synthesis effect.
    What is the market outlook for 2- [4- [2- [[ (2S) -2-hydroxy-3- (2-thiophen-2-ylphenoxy) propyl] amino] -2-methylpropyl] phenoxy] pyridine-3-carbonitrile?
    "2 - [4 - [2 - [[ (2S) -2 -hydroxy-3- (2 -thiophene-2 -ylphenoxy) propyl] amino] - 2 -methylpropyl] phenoxy] pyridine-3 -formonitrile" This product is related to many aspects in the prospects of the modern market.
    Looking at this compound, its chemical structure is unique, or it has specific biological activities and application potential. However, its market prospect is mainly in the field of medicine. If it can be confirmed that it has significant curative effect on specific diseases, such as cardiovascular diseases, neurological diseases, etc., and has high safety and low side effects, it will be favored by pharmaceutical companies, emerge in the research and development of new drugs, and then open up a broad market.
    Furthermore, in the field of pesticides, if it has high-efficiency inhibition or killing effect on pests, is environmentally friendly, has little impact on non-target organisms, and can also occupy a place in the pesticide market, providing new and effective plant protection products for agricultural production.
    However, its market development also poses challenges. R & D costs are high, and huge capital investment and long time periods are required from compound discovery to clinical trials and marketing. And the market competition is fierce, similar or similar products have occupied a certain market share, and to stand out, they need to have unique advantages.
    In addition, regulations and policies have a great impact on it. Strict drug and pesticide approval systems, if they cannot meet relevant standards, it is difficult to enter the market. Only by breaking through many difficulties, giving full play to their own advantages, and meeting market demand and regulatory requirements can this compound have a bright market prospect and shine in related fields.
    What are the safety and toxicity of "2- [[ (2S) -2-hydroxy-3- (2-thiophen-2-ylphenoxy) propyl] amino] -2-methylpropyl] phenoxy] pyridine-3-carbonitrile"?
    "2 - [4 - [2 - [[ (2S) -2 -hydroxy-3- (2-thiophene-2-ylphenoxy) propyl] amino] - 2-methylpropyl] phenoxy] pyridine-3-formonitrile" This substance is related to its safety and toxicity. Throughout the ages, in order to understand its properties, it is necessary to follow the method of testing the substance. However, I have not heard the detailed test of this specific thing, so it is difficult to say for sure.
    The toxicity and safety of any test substance are often viewed in response to living things. If you feed it with insects and pika, check its appearance after eating, whether it is sick or dead. Or observe its contact with the skin and mucous membranes to see if there is any redness, swelling or ulceration. Furthermore, enter the bloodline and test its impact on the operation of the viscera and meridians.
    Although this thing has its name, if there is no detailed test, only from its name, it is difficult to determine its toxicity and safety. Or it is a new thing, and it has not been widely inspected; or it has been tested, but I have not heard it. To know the details, you need to interview people who specialize in this way, or study classics and records, in order to get its exact feelings.