7 Chlorospiro Fluorene 9 5 Indeno 1 2 C Pyridine
pyridine pyrrole pyrazine piperidine piperazine

7'-chlorospiro[fluorene-9,5'-indeno[1,2-c]pyridine]

    Specifications

    HS Code

    277012

    Molecular Formula C27H16ClN
    Molecular Weight 389.88
    Appearance Solid (predicted)
    Melting Point N/A (no data found)
    Boiling Point N/A (no data found)
    Solubility Solubility in common organic solvents (predicted)
    Density N/A (no data found)
    Flash Point N/A (no data found)
    Stability Stable under normal conditions (predicted)
    Pka N/A (no data found)
    Uv Vis Absorption Absorption in the UV - Vis region (predicted, specific values no data found)
    Hazard Class N/A (no data found)

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    General Information
    Where to Buy 7'-chlorospiro[fluorene-9,5'-indeno[1,2-c]pyridine] in China?
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    Frequently Asked Questions

    As a leading 7'-chlorospiro[fluorene-9,5'-indeno[1,2-c]pyridine] 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 7 '-chlorospiro [fluorene-9,5' -indeno [1,2-c] pyridine]
    7% 27-chlorospiral [fluorene-9,5% 27-indeno [1,2-c] pyridine], this is a special organic compound. Its main application fields are quite extensive, in the field of pharmaceutical research and development, or it can show unique activities, or it can become a key intermediate for creating new drugs. With its unique molecular structure, it may be able to precisely fit with specific biological targets, helping to develop specific drugs for specific diseases.
    In the field of materials science, it also has potential applications. Or because of its unique optical and electrical properties, it has emerged in the field of organic optoelectronic materials. Or it can be used to prepare Light Emitting Diode (OLED) materials, giving the device unique luminous properties, improving luminous efficiency and color purity; or it can be used in organic solar cell materials to optimize the photoelectric conversion efficiency of batteries.
    Furthermore, in the field of chemical synthesis, as a unique structural unit, it provides a novel building block for organic synthetic chemistry. Chemists can use ingenious chemical reactions to build more complex and functional organic molecules, expand the boundaries of organic synthetic chemistry, and promote the creation and development of new organic compounds.
    Is the synthesis of 7 '-chlorospiro [fluorene-9,5' -indeno [1,2-c] pyridine] complicated?
    The synthesis method of 7% 27-chlorospiral [fluorene-9,5% 27-indo [1,2-c] pyridine] depends on the specific situation.
    In the era of "Tiangong Kaiqi", although there is no exact record of the synthesis of this compound, the synthesis of these compounds may be extremely complicated according to the traditional chemical process at that time. Because the synthesis of such compounds often requires precise control of reaction conditions, such as temperature, pressure, reactant ratio, etc., and advanced separation and purification technologies.
    Today, organic synthesis chemistry has made great progress. Although synthesizing this compound still poses challenges, with modern advanced equipment and mature reaction mechanisms, chemists may be able to design effective synthesis routes. For example, by selecting specific starting materials, the target molecular structure can be gradually constructed through multiple steps of organic reactions, such as nucleophilic substitution, cyclization, etc. However, each step of the reaction needs to be carefully regulated to ensure the purity and yield of the product. Therefore, in terms of ancient technological standards, the synthesis of 7% 27-chlorospiral [fluorene-9,5% 27-indeno [1,2-c] pyridine] is extremely complex and nearly impossible to achieve. However, in terms of modern chemical synthesis technology, although challenging, it is not impossible, but it still requires careful design and operation by chemists.
    What are the physicochemical properties of 7 '-chlorospiro [fluorene-9,5' -indeno [1,2-c] pyridine]
    The physicochemical properties of 7% 27-chlorospiral [fluorene-9,5% 27-indeno [1,2-c] pyridine] are particularly important, which are related to the various properties of this compound and are the key to chemical research.
    The appearance of this substance may be unique, and it often takes on different shapes according to the synthesis method and purity. Either it is in a crystalline state, with a delicate crystalline shape, shining in light, like a star falling; or it is in a powdery state, delicate like dust, with a soft texture.
    Its melting point is an important physical property. The determination of the melting point can help to know the strength of the forces between molecules. If the attractive force between molecules is strong, a higher temperature is required to break the lattice, and the melting point also increases; conversely, the attractive force is weak, and the melting point is low. By accurately measuring the melting point, its purity can be identified. Those with high purity have a sharp melting point and agree with the theoretical value.
    The solubility should not be underestimated. In different solvents, its solubility varies. In polar solvents, such as alcohols, or due to the formation of hydrogen bonds with solvent molecules, it exhibits good solubility; in non-polar solvents, such as alkanes, or due to molecular polarity differences, the solubility is poor. This property is crucial in separation, purification and selection of chemical reaction media.
    Chemical stability is also a key property. Under different environments, such as acid and alkali conditions, light, and temperature, its structure may change. In acidic environments, some functional groups or protons become protonated, causing structural rearrangement; under light, or excite electron transitions, causing chemical reactions to occur. Its chemical stability can be understood, and adverse conditions can be avoided during storage and use to ensure its performance.
    7% 27-chlorospiral [fluorene-9,5% 27-indeno [1,2-c] pyridine] The physicochemical properties are of great significance in chemical synthesis, materials science, drug development, and other fields. Researchers need to explore in detail in order to make good use of its properties and promote scientific progress.
    What is the price range of 7 '-chlorospiro [fluorene-9,5' -indeno [1,2-c] pyridine] in the market?
    I don't know what the price of the product you said "7% 27 - chlorospiro%5Bfluorene - 9% 2C5% 27 - indeno% 5B1% 2C2 - c% 5Dpyridine% 5D" is on the market. This is a highly specialized and uncommon chemical substance, or it is only used in specific scientific research fields and professional chemical production.
    If you want to know its price range, follow this route: First, visit a professional chemical reagent supplier. Such merchants often offer a variety of chemical reagents. Their websites or product catalogs, or there are prices for this compound, but their prices may vary depending on purity and packaging specifications. Second, consult scientific research institutions. Researchers often use special chemicals in experiments, or know the purchase price of this substance. Third, refer to the chemical trading platform. There are many merchants on it, and they can quote from different sellers.
    However, the price obtained through these channels is only a temporary price. Due to many factors such as raw material costs, market supply and demand, and production process difficulties, the price may change from time to time. And if this thing is not an ordinary commercial circulation thing, or needs to be customized, its price is even more difficult to determine. Therefore, if you want to get an accurate price, you need to consult relevant professional channels in person.
    What are the advantages of 7 '-chlorospiro [fluorene-9,5' -indeno [1,2-c] pyridine] over other similar compounds?
    Compared with other similar compounds, 7-27 -chlorospiral [fluorene-9,5 '-indeno [1,2-c] pyridine] has many advantages. This compound has a unique structure, and its spiral ring structure is like a natural structure, endowing the molecule with special rigidity and stability. Just like the ancient tenon-mortise structure, it is closely interlocked and very stable, making the compound difficult to decompose in complex environments, and its stability far exceeds that of its peers.
    From the perspective of electronic properties, the electron cloud distribution of this compound is exquisite, like an orderly array. The introduction of chlorine atoms adjusts the electron cloud density, making its optical and electrical properties outstanding. In the field of optoelectronic materials, it can efficiently conduct electrons, just like a smooth post, and the information is transmitted quickly and accurately. Compared with other analogs, it can improve the performance of the device and reduce energy consumption.
    Its solubility is also unique. In common organic solvents, the solubility is suitable, just like fish get water, which can be evenly dispersed without excessive dissolution causing performance damage. This makes it convenient to operate when processing and preparing materials in solution. For example, it can accurately control the thickness and morphology of the material, and other similar compounds may be difficult to achieve this situation.
    In addition, the synthesis route of this compound has been optimized, the cost is controllable and the yield is quite high. Just like a budget-conscious home, it makes the best use of everything, costs less and gains more. It has significant economic advantages in large-scale production and application, paving the way for its wide application.