5 Carboxythiophene 2 Boronicacid
quinoline thiophene imidazole thiazole

5-Carboxythiophene-2-boronicacid

Taiy Chemical

    Specifications

    HS Code

    337005

    Name 5-Carboxythiophene-2-boronic acid
    Molecular Formula C5H5BO4S
    Molecular Weight 170.009 g/mol
    Appearance Solid
    Melting Point 159 - 161 °C
    Solubility Soluble in common organic solvents like DMSO, DMF
    Pka around 3 - 4 (carboxylic acid group)
    Boiling Point Decomposes before boiling
    Stability Stable under normal conditions, but moisture - sensitive
    Odor Odorless

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    General Information
    Where to Buy 5-Carboxythiophene-2-boronicacid in China?
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    Frequently Asked Questions

    As a leading 5-Carboxythiophene-2-boronicacid supplier, we deliver high-quality products across diverse grades to meet evolving needs, empowering global customers with safe, efficient, and compliant chemical solutions.

    What are the main application fields of 5-carboxylthiophene-2-boronic acid
    5-Carboxyquinaldine-2-sulfonic acid has a wide range of uses and has its own figures in many fields.
    In the field of medicinal chemistry, it can be used as a key intermediate in organic synthesis. Taking the creation of new drugs as an example, chemists can derive compounds with unique biological activities by delicately modifying the structure of 5-carboxyquinaldine-2-sulfonic acid. Such compounds may be able to treat specific diseases, such as anti-tumor, anti-infection, etc., showing excellent efficacy. Due to the special chemical structure of this substance, it has the potential to interact with specific targets in organisms, opening up a new path for the development of new drugs.
    In the field of materials science, it also plays an important role. For example, in the preparation of functional polymer materials, 5-carboxyquinaldine-2-sulfonic acid can be introduced into the polymer chain as a functional monomer. In this way, the prepared polymer materials may have unique electrical, optical or chemical properties. For example, some polymer materials with high selective identification ability for specific ions, 5-carboxyquinaldine-2-sulfonic acid plays an important role in the synthesis process, and such materials are very useful in ion detection and separation.
    Furthermore, in the field of analytical chemistry, 5-carboxyquinaldine-2-sulfonic acid can be used as an analytical reagent. Because of its special coordination ability for some metal ions, it can be used for qualitative and quantitative analysis of metal ions. By forming complexes with specific colors or fluorescence, analysts can sensitively and accurately detect the types and contents of metal ions in samples, which are widely used in environmental monitoring, food testing and other fields related to people's livelihood.
    In summary, 5-carboxyquinaldine-2-sulfonic acid plays an indispensable role in the fields of medicine, materials, analytical chemistry and other fields, providing an important material basis for many scientific research and practical applications.
    What is the synthesis method of 5-carboxylthiophene-2-boronic acid?
    The synthesis of 5-aminotetrazole-2-carboxylic acids has attracted much attention in the field of organic synthesis. Its synthesis path is a multi-step chemical transformation method, and various reactions are used to achieve the construction of target molecules.
    One of the common methods is to use simple compounds containing nitrogen and carbon as starting materials and splice them through gradual reactions. For example, with appropriate nitrogen and carbon sources, the tetrazole ring is first constructed, and then the carboxyl group is introduced at a specific position. This process often requires the help of multi-step reactions, and the control of the conditions of each step is very critical. < Br >
    A nitrogen-containing heterocyclic precursor can be taken first, treated with a suitable alkali agent to activate its structure, and then nucleophilic substitution reaction with carboxyl-containing electrophilic reagents occurs. This reaction needs to be carried out in a suitable solvent, and the temperature and reaction time need to be carefully controlled to obtain higher yield and selectivity.
    Or another strategy can be adopted, using compounds with potential reaction check points as starting materials, forming tetrazole rings through cyclization, and ingeniously introducing carboxyl functional groups during the cyclization process. This path can avoid cumbersome operations and side reactions that may occur in the step-by-step reaction, but the design requirements for reaction conditions and starting materials are quite high.
    During the reaction process, the reagents and catalysts used also have a great impact on the reaction process and product quality. Selecting a high-efficiency and specific catalyst can not only speed up the reaction rate, but also improve the purity and yield of the target product. At the same time, the separation and purification of the reaction intermediate is also an important link to ensure the quality of the final product. After each step of the reaction, it is often necessary to remove impurities by means of recrystallization and column chromatography to obtain a pure intermediate or final product. To synthesize 5-aminotetrazole-2-carboxylic acid, it is necessary to comprehensively consider many factors such as reaction path, condition control, reagent selection and product purification, and carefully design and optimize it to achieve efficient and high-quality synthesis.
    What are the physical and chemical properties of 5-carboxylthiophene-2-boronic acid?
    5-Carboxycytidine-2-sulfonic acid is a quirky compound, and its physical and chemical properties are particularly important.
    In terms of its properties, under room temperature, 5-carboxycytidine-2-sulfonic acid is mostly white to almost white powder, which is fine and uniform. This form is easy to store and use, and is also conducive to subsequent experimental operations and reactions.
    In terms of solubility, the substance has a certain solubility in water. Water can interact with it, and its carboxyl group and sulfonic acid group are both hydrophilic groups, which can form hydrogen bonds with water molecules, so it can be moderately dissolved in polar solvent water. This property makes it uniform in chemical reactions or biological experiments using water as a medium. It can participate in the reaction or play a role.
    Thermal stability is also an important property. When heated, 5-carboxycytidine-2-sulfonic acid can maintain structural stability within a certain temperature range. However, if the temperature is too high, its chemical bonds will be broken due to energy input, resulting in structural changes, which in turn affect its chemical activity and function. Generally speaking, it is necessary to properly control the temperature to prevent it from deteriorating due to overheating. In terms of acidity and alkalinity, 5-carboxycytidine-2-sulfonic acid is acidic because it contains carboxyl groups and sulfonic acid groups, both of which are acidic. In solution, protons can be released to change the pH of the solution. This acidic property is of great significance in many chemical reactions and biological processes. It can be used as a catalyst to participate in some reactions or affect the acid-base equilibrium environment in organisms.
    Chemical activity is quite active. Both carboxyl groups and sulfonic acid groups are active check points and can participate in a variety of chemical reactions. For example, carboxyl groups can undergo esterification reactions and form esters with alcohols under specific conditions; sulfonic acid groups can undergo substitution reactions, etc. These reactions provide the possibility for the synthesis of more complex compounds, which are widely used in the field of organic synthesis.
    5-carboxycytidine-2-sulfonic acid has diverse physical and chemical properties and has potential application value in many fields such as scientific research, chemical industry and biology. It is a compound worthy of further investigation.
    What are the precautions for 5-carboxylthiophene-2-boronic acid during storage and transportation?
    When storing and transporting 5-hydroxytryptamine-2-succinic acid, many matters need to be paid attention to.
    When storing, the temperature and humidity of the environment are the first priority. These two have a great impact on its stability and should be controlled within a specific range. If the temperature is too high, it may cause its decomposition and deterioration, and its efficacy will be damaged; if the humidity is too high, it is easy to deliquescent, destroy its physical properties, and then affect the quality. It is necessary to find a dry, cool place, and avoid direct light, because it is sensitive to light, light or chemical reactions, causing changes in ingredients.
    Furthermore, the storage container should not be underestimated. It is necessary to choose a material with stable chemical properties and does not react with 5-hydroxytryptamine-2-succinic acid. Although glass containers have good light transmission, they are fragile; plastic containers may have the risk of component migration. Therefore, after weighing, choose a suitable container to ensure its safety during storage.
    As for transportation, vibration turbulence is a big taboo. This substance may be structurally changed due to excessive vibration, which affects performance. Transportation tools need to run smoothly, and more caution should be taken when road conditions are not good. At the same time, thermal insulation measures are essential to ensure constant temperature during transportation and avoid large fluctuations in external temperature.
    In addition, isolation from other substances is also critical. 5-Hydroxytryptamine-2-succinic acid may react with certain chemicals, so it should not be mixed with substances that are incompatible in nature during transportation to prevent accidents.
    Only by taking care of the above during storage and transportation can the quality and performance of 5-hydroxytryptamine-2-succinic acid be maintained to the maximum extent, so that it can still play its due role when it reaches its destination.
    What is the market price of 5-carboxylthiophene-2-boronic acid?
    In today's market, the price of 5-yl tryptophan-2-sulfonic acid is composed of many factors. It is made by the land, and it is different in different places. Due to the difference in water, soil and weather, the quantity and quality of this material are different, and the price is also different. If the earth is thick and suitable for its production, the quantity is low and the quality is low, and the quality is low. If the earth is not good, the quantity is thin and the quality is low, and the quality is low, it must be low.
    Furthermore, the supply and demand are deep. If the market demand for 5-yl tryptophan 2-sulfonic acid is high, and the supply is limited, if the supply is low and the supply is blocked, the price will rise; on the contrary, if the demand is weak, the supply will be left behind, and the price will decline from the price to promote sales and circulation.
    The method of manufacturing is also the best. The refined and efficient method can reduce costs, increase the amount, and make the price more effective. If the method is developed, the cost is high, and the price is lower than the price.
    In addition, the transformation of policy laws also affects the price. If the policy is increased, the family meets the requirements, or the cost is increased. The whole of the policy is also related to the cost cost, and the effect of production or production.
    Therefore, the market of 5-tryptophan-2-sulfonic acid is like sailing on the sea. It fluctuates in many waves such as land, supply and demand, laws, and policies. Only by understanding these factors can we make the secret of its transformation. In the commercial sea, it is beneficial to avoid harm and has a good edge.