1 2 4 Triazolo 1 5 A Pyridine 6 Bromo
pyridine pyrrole pyrazine piperidine piperazine

[1,2,4]Triazolo[1,5-a]pyridine, 6-bromo-

    Specifications

    HS Code

    929147

    Chemical Formula C7H4BrN3
    Molecular Weight 210.03
    Appearance Solid (usually white or off - white)
    Melting Point Data - specific to experimental conditions
    Boiling Point Data - specific to experimental conditions
    Solubility Solubility in organic solvents like dichloromethane, less soluble in water
    Density Data - specific to experimental conditions
    Pka Data - specific to experimental conditions
    Stability Stable under normal conditions, but may react with strong oxidizing agents
    Hazard Class May be harmful if swallowed, inhaled or in contact with skin

    As an accredited [1,2,4]Triazolo[1,5-a]pyridine, 6-bromo- factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.

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    Competitive [1,2,4]Triazolo[1,5-a]pyridine, 6-bromo- prices that fit your budget—flexible terms and customized quotes for every order.

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    General Information
    Where to Buy [1,2,4]Triazolo[1,5-a]pyridine, 6-bromo- in China?
    As a trusted [1,2,4]Triazolo[1,5-a]pyridine, 6-bromo- manufacturer, we deliver: Factory-Direct Value: Competitive pricing with no middleman markups, tailored for bulk orders and project-scale requirements. Technical Excellence: Precision-engineered solutions backed by R&D expertise, from formulation to end-to-end delivery. Whether you need industrial-grade quantities or specialized customizations, our team ensures reliability at every stage—from initial specification to post-delivery support.
    Frequently Asked Questions

    As a leading [1,2,4]Triazolo[1,5-a]pyridine, 6-bromo- 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 main use of this product [1,2,4] Triazolo [1,5-a] pyridine, 6-bromo-
    This compound [1,2,4] triazolo [1,5-a] pyridine, 6-bromine-has a wide range of main uses. In the field of medicinal chemistry, it is often a key intermediate for the creation of new drugs. Due to its unique chemical structure, it can interact with specific targets in organisms, or it can help to develop specific drugs for specific diseases, such as anti-tumor, anti-virus and the like.
    In the field of materials science, it also has potential applications. It can be chemically modified to introduce it into polymer materials, imparting special optical, electrical or thermal properties to the materials, and then applied to organic Light Emitting Diode (OLED), sensors and other fields to improve the functionality and performance of materials.
    In the field of pesticide chemistry, it may become an important starting material for the development of new high-efficiency and low-toxicity pesticides. With its structural properties, it may exhibit inhibitory or killing effects on specific pests or pathogens, and has little impact on the environment, which meets the needs of the current development of green agriculture.
    In addition, in chemical synthesis research, this compound is often used as a starter or key intermediate. Through various chemical reactions, compounds with more complex and diverse structures can be derived, expanding the scope of organic synthesis and providing more novel molecular frameworks and structural models for organic chemistry research.
    What is the market outlook for this product [1,2,4] Triazolo [1,5-a] pyridine, 6-bromo?
    Guanfu 6-bromo- [1,2,4] triazolo [1,5-a] pyridine This product has considerable market prospects in today's market.
    From the perspective of its application, this compound is in the genus of medicinal chemistry, or has significant use. The structure of triazolo-pyridine is often the key parent nucleus for the creation of new drugs, with diverse biological activities, such as antibacterial, anti-inflammatory, anti-tumor and other effects. The substitution of 6-bromine may be able to fine-tune its activity and selectivity, so it is important for researchers in the process of new drug development, and the market demand may grow with the progress of new drug creation.
    Furthermore, in the field of materials science, materials containing this structure may have unique photoelectric properties. It may be used to prepare organic Light Emitting Diodes, sensors and other materials. With the advancement of science and technology, the demand for such materials will also rise, opening up new market space for 6-bromo- [1,2,4] triazolo [1,5 - a] pyridine.
    However, it is also necessary to consider the challenges encountered in its market. The process of synthesizing this compound may be complicated and costly. If you want to expand market share, it is necessary to optimize the synthesis process and reduce its cost. And market competition is also a factor that cannot be ignored. The competition among the industry prompts manufacturers to strive for innovation and improve product quality and cost performance.
    In summary, although 6-bromo- [1,2,4] triazolo [1,5-a] pyridine faces challenges, in view of its potential applications in the fields of medicine and materials, the market prospect is still broad. Over time, through process improvement and market development, it will be able to occupy a place in the chemical products market.
    Is the production process of this product [1,2,4] Triazolo [1,5-a] pyridine, 6-bromo complicated?
    This compound is 6-bromo- [1,2,4] triazolo [1,5-a] pyridine, and its production process is not very complicated.
    To prepare this compound, pyridine derivatives are often used as starting materials. Initially, the specific position of the pyridine ring is modified and a suitable substituent is introduced. This step requires precise reaction conditions to ensure the accuracy of the substitution check point. If the appropriate halogenation reagent is selected, the bromine atom can be precisely integrated into the 6 position of the pyridine ring at a mild temperature and a specific solvent environment.
    Subsequently, the construction of the triazolo ring structure is a key step. Nitrogen-containing heterocyclic compounds are often used for cyclization reactions with pyridine derivatives. In the reaction, the choice of catalytic system is very important. Some metal catalysts or organic bases can effectively promote the cyclization process. At the same time, the control of reaction temperature and time cannot be ignored. If the temperature is too high or the time is too long, or side reactions may breed, the purity of the product will be damaged; if the temperature is too low or the time is insufficient, the reaction will not be fully carried out.
    In addition, the nature of the reaction solvent has a significant impact on the reaction process and product yield. The choice of polar solvent or non-polar solvent must be in line with the reaction mechanism and substrate characteristics. Although the entire process requires fine regulation of each link, with modern organic synthesis technology and mature reaction strategies, skilled organic synthesis practitioners can obtain this compound relatively stably by following standard procedures and operating specifications. Therefore, its production process is not a highly complex category in the field of organic synthesis.
    What are the main quality indicators of this product [1,2,4] Triazolo [1,5-a] pyridine, 6-bromo
    The main quality indicators of this product [1,2,4] triazolo [1,5-a] pyridine, 6-bromide are related to its quality and application suitability. They are described as follows:
    One is purity. Purity is a key factor in measuring the quality of the product. High purity [1,2,4] triazolo [1,5-a] pyridine, 6-bromide, with low impurity content, can effectively improve its performance in various chemical reactions and application scenarios. If the purity is insufficient, impurities may interfere with the reaction process, resulting in impurity of the product, or affect the efficacy of the product in a specific field.
    The second is the content. It is crucial to accurately determine the content of [1,2,4] triazolo [1,5-a] pyridine, 6-bromine in the product. Accurate content data can provide a key basis for the control of the production process and the formulation. The content deviation is too large, or the product performance is unstable, and it is difficult to meet the established Quality Standards and application requirements.
    The third is the appearance characteristics. The appearance of the product is also an important quality indicator. Under normal circumstances, it should exhibit a specific color state, such as crystals or powders of a specific color, and it should have a uniform texture. If there is any abnormality in the appearance, such as color variation, agglomeration or foreign matter, etc., or it suggests that the product encounters problems during production and storage, which affects its quality and use.
    The fourth is the residue of related substances. The residual amount of related substances such as solvents and catalysts involved in the production process needs to be strictly controlled. Excessive residues not only affect the quality of the product itself, but also may cause safety hazards in subsequent applications. Especially when used in medicine, food and other fields with strict safety requirements, it is necessary to ensure that the residual amount of related substances meets the specified standards.
    The fifth is the melting point. [1,2,4] triazolo [1,5-a] pyridine, 6-bromine has a specific melting point range. By measuring the melting point, the purity and quality of the product can be preliminarily judged. If the melting point deviates from the normal range, it may indicate that there are impurities in the product, or its molecular structure has changed, which affects its quality and performance.
    What is the price trend of this product [1,2,4] Triazolo [1,5-a] pyridine, 6-bromo
    I am looking at your inquiry about [1,2,4] Triazolo [1,5-a] pyridine, 6-bromo - the price trend of this product. However, the price trend of this product is actually influenced by many factors, which is difficult to hide.
    First, the situation of supply and demand is the most critical. If the market has strong demand for this product and limited supply, its price will rise; conversely, if supply exceeds demand, the price will fall. For example, in the past, when a certain place was due to new discoveries, demand increased sharply, and prices also soared; later, due to capacity expansion, supply increased, and prices slowed down.
    Second, the cost of raw materials has a great impact. If the price of the raw materials required for the manufacture of this product rises, the cost of the product also increases. In order to ensure profits, merchants often raise prices and sell them; on the contrary, if the price of raw materials decreases, the price of the product also has room to decrease.
    Third, policies and regulations also play a role. If the government issues new regulations, or increases taxes, or strictly protects the environment, it can lead to an increase in production costs, which can promote prices; conversely, if there are supportive policies, costs may decrease, and prices will also be affected.
    Fourth, the competitive situation should not be underestimated. In the market, the same players compete for shares or reduce prices in order to obtain them; if there are few competitors and the trend of monopoly is gradually formed, the price may be controllable and increase.
    To sum up, [1,2,4] Triazolo [1,5 - a] pyridine, 6 - bromo - the price trend of this product is fickle under the intertwined action of supply and demand, raw materials, policies, competition and other factors. To understand the details, you need to always pay attention to market dynamics and gain insight into changes in all parties in order to be sure.