4 Trifluoromethyl Quinoline 2 Carbohydrazide
quinoline thiophene imidazole thiazole

4-(trifluoromethyl)quinoline-2-carbohydrazide

Taiy Chemical

    Specifications

    HS Code

    860348

    Chemical Formula C11H8F3N3O
    Molecular Weight 255.196
    Appearance Solid (predicted)
    Boiling Point 437.7°C at 760 mmHg (predicted)
    Melting Point 188 - 190°C
    Flash Point 218.5°C (predicted)
    Density 1.448 g/cm³ (predicted)
    Logp 2.28 (predicted)
    Solubility Soluble in DMSO, sparingly soluble in water (predicted)
    Pka 11.74±0.40 (predicted)

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    General Information
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    Frequently Asked Questions

    As a leading 4-(trifluoromethyl)quinoline-2-carbohydrazide 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 4- (trifluoromethyl) quinoline-2 -carbohydrazide?
    (Triallyl) boronic acid-2-silicoborazane, which has a wide range of uses.
    Triallyl boronic acid, allyl has active chemical properties, which makes triallyl boronic acid great in the field of organic synthesis. It is often used as an intermediate and participates in the construction of many complex organic compounds. For example, in the construction of carbon-carbon bond reactions, triallyl boronic acid can use the unique reactivity of allyl groups to couple with halogenated hydrocarbons, etc., to help synthesize organic molecules with specific structures, providing key intermediates for drug development, materials science and other fields.
    As for 2-silicoborazane, the coexistence of silicon, boron and nitrogen elements gives it unique properties. In the field of materials, it is an important raw material for the preparation of high-performance ceramic materials. Under high temperature conditions, 2-silicoborazane can be converted into ceramic materials with excellent high temperature resistance and high strength properties through a series of reactions. In the aerospace field, such ceramic materials can be used to manufacture engine components, high temperature resistant coatings, etc., which can withstand extreme high temperature environments and ensure the safe and stable operation of aircraft. In the field of electronics, 2-silicoborazane related materials can be used to manufacture insulating layers and semiconductor materials for electronic components due to their special electrical properties, improving the performance and stability of electronic equipment.
    What are the physical properties of 4- (trifluoromethyl) quinoline-2 -carbohydrazide
    As "Tiangong Kaiwu" goes: "Where hardware is in the sky and earth, and is loved by creation, there is nothing like copper, silver, and gold. However, copper and silver are all born in mountains, while gold is only produced in water. Its quality is clear, not mixed with lead and tin, and not like copper and iron, so it is extremely valuable." As for the physical properties of tetra- (triethyl) boron-2-carborane, its color is often transparent, just like the new dew in the morning, pure and free of variegation. The texture is light, and it is like nothing to touch, but it has a unique toughness. Although it is light, it is not easy to break. Its melting point is also abnormal, and the melting point is quite low, just like the spring snow melts when it is warm; the boiling point is quite high, just like a rock that does not move through fire. And under the light, this thing often shines brightly and shines brightly, like a bright star in the night sky.
    Furthermore, the physical properties of carbon borane are also unique. Its shape is often solid, solid and stable, like the cornerstone of the earth. The appearance is mostly in the shape of crystal, just like the clear ice crystal, reflecting the light. The hardness is relatively considerable, although not as strong as gold and stone, it is not easy to break. The density is moderate, it does not float or sink, and when placed in water, it seems to have an independent nature. It does not blend with water, but it is at ease in the water, which is of special interest. And the chemical properties of this thing are relatively stable. At room temperature, it is not disturbed by ordinary substances, just like a high scholar hidden in the world, who is alone and not stained by the world.
    What is the chemical synthesis method of 4- (trifluoromethyl) quinoline-2 -carbohydrazide
    In order to obtain the synthesis of (triethylphenyl) square light-2-carbon phosphonitrile, the following steps need to be followed.
    First of all, the preparation of (triethylphenyl) square light. Take an appropriate amount of raw materials, put them in a suitable reactor, and put them into the corresponding reactant according to a specific ratio. Control the temperature with precision to make it react within a specific temperature range. This process requires careful observation of the reaction process. With a suitable catalyst, the reaction rate is accelerated and the direction of the reaction is guaranteed. When the reaction reaches a certain extent, the generated (triethylphenyl) square light is separated from the reaction system by a delicate separation method, and its purity is improved through the purification process.
    Repeat the preparation of - 2 - carbon phosphonitrile. Choose high-quality starting materials, mix them in a clean reaction environment according to scientific proportions. Use clever heating methods to make the reaction system reach the appropriate temperature, at this temperature, the reaction proceeds smoothly. During this time, special additives may be added to optimize the reaction conditions and make the reaction more smooth. After the reaction is completed, use advanced separation and refining methods to obtain pure - 2 - carbon phosphonitrile.
    The last word is the method of combining the two. The prepared (triethylphenyl) square light and -2-carbophosphazene are put into a special reaction vessel according to the precise molar ratio. The temperature, pressure and other conditions of the reaction are regulated to create a suitable reaction atmosphere. A specific catalytic system may be introduced to promote the effective combination of the two. During the reaction, closely monitor the reaction parameters and make adjustments in a timely manner. After the reaction is completed, the impurities are removed by a complex separation and purification process to finally obtain the target compound. In this way, the method of combining (triethylphenyl) square light-2-carbophosphazene is obtained.
    What are the precautions for 4- (trifluoromethyl) quinoline-2 -carbohydrazide in storage and transportation?
    The storage and transportation of trimethyltrialkyl square light, two and silicone boron grease should not be ignored.
    Trimethyltrialkyl square light is more active, and it is often prone to explosion in case of heat, open flame or oxidant. Therefore, when storing, it is advisable to choose a cool and ventilated storage, away from fire and heat sources, and the storage temperature should not exceed 30 ° C. And it must be stored separately from oxidants, acids and alkalis, and mixed storage should not be avoided. When handling, be careful to prevent damage to packaging and containers, which may cause leakage.
    As for the second, its characteristics should not be underestimated. It is toxic and corrosive to a certain extent, and the storage place should be well ventilated and kept dry. It needs to be stored in isolation from edible chemicals, oxidants, etc. During transportation, make sure that the container does not leak, collapse, fall, or damage, and the speed should be slow to prevent it from overflowing due to bumps.
    Silicone boron grease, although relatively stable, should also be stored in moisture-proof, sun-proof, and in a cool and dry place. During transportation, heavy pressure and violent vibration should also be avoided to prevent package damage.
    For all these three, the storage place should be equipped with suitable materials to contain leaks. And at the place of storage and transportation, when the danger mark is clearly displayed, the relevant personnel must be familiar with the emergency treatment method. In this way, the safety of storage and transportation should be ensured, so as to avoid accidents.
    Potential safety risks of 4- (trifluoromethyl) quinoline-2 -carbohydrazide
    (Trimethylmethyl) square fire, two, and silicon are all commonly used in chemical industry, and their hidden dangers cannot be ignored.
    (trimethylmethyl) square fire is strong and active, and it is easy to cause ignition and explosion. If it is not suitable for storage, in case of open fire or high temperature, it will be impossible to burn in an instant, and the surrounding people, animals, and houses will suffer. And its anti-control, as soon as there is a bad pool, the problem will be immediate, just like the fierce wall lying by the side of the body, and it will be difficult to see.
    Both, the value of "two", and the field of chemical industry, the meaning is extraordinary. Or the proportion of a certain inverse, or the content of a certain ingredient, with a slight deviation, it is all good. The principle of chemistry, such as the spider, is completely different, and it is thousands of miles away. No, it depends on the quality of the product, and it is more related to the safety of life. If it is ignored, it is like walking on thin ice, which is dangerous for four volts.
    As for silicon, its low voltage is due to its chemical properties. In some cases, or strong reactions, it can be poisoned. And if its powder is inhaled in the air, it will damage the lungs and become sick for a long time. And it is in different environments, such as dark arrows, to prevent.
    The safety implications of the three are, for example, on the reef of the dark night, if you travel on it, if you don't pay attention, you will die on the ship. Therefore, when it comes to chemical engineering, you should be careful, check its characteristics, and keep the rules. Only then can you be safe and avoid it.