8 Hydroxyquinoline Aluminum Salt
quinoline thiophene imidazole thiazole

8-Hydroxyquinoline aluminum salt

Taiy Chemical

    Specifications

    HS Code

    431249

    Chemical Formula Al(C9H6NO)3
    Molecular Weight 459.43 g/mol
    Appearance Yellowish - green powder
    Melting Point 360 - 370 °C
    Solubility Insoluble in water, soluble in some organic solvents like chloroform
    Luminescence Property Emits green light under appropriate excitation
    Thermal Stability Good thermal stability up to a certain temperature range
    Electron Transporting Property Has electron - transporting ability
    Crystal Structure Typically has a certain crystalline form depending on synthesis method
    Application Field Widely used in organic light - emitting diodes (OLEDs)

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    General Information
    Where to Buy 8-Hydroxyquinoline aluminum salt in China?
    As a trusted 8-Hydroxyquinoline aluminum salt 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 8-Hydroxyquinoline aluminum salt 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 8-hydroxyquinoline aluminum salt?
    8-Hydroxyquinoline copper is a complex formed by copper ion and 8-hydroxyquinoline, which has important applications in many fields.
    In the agricultural field, 8-hydroxyquinoline copper is an efficient, low-toxicity and broad-spectrum fungicide. It can effectively prevent and control many plant diseases, such as cucumber downy mildew, tomato early blight, pepper anthrax, etc. Its mechanism of action is that 8-hydroxyquinoline can complex with metal ions in pathogenic bacteria, interfere with the normal metabolism of pathogens, and inhibit their growth and reproduction. At the same time, copper ions also have bactericidal activity, and the two cooperate to enhance the bactericidal effect. Because of its low toxicity and low residue, it meets the needs of the current development of green agriculture.
    In the field of materials science, 8-hydroxyquinoline copper exhibits unique photoelectric properties. It can be used to prepare organic electroluminescent devices (OLEDs), which can improve the luminous efficiency and stability of the device as a luminescent material or electron transport material. In the manufacture of OLED displays, with the excellent luminescent properties and film-forming properties of 8-hydroxyquinoline copper, high-quality display effects can be achieved.
    In the field of medicine, 8-hydroxyquinoline copper has certain antibacterial, antiviral and anti-tumor activities. Studies have shown that it has inhibitory effects on certain bacteria and viruses, or can be developed into new antibacterial and antiviral drugs. At the same time, in anti-tumor research, 8-hydroxyquinoline copper may induce apoptosis of tumor cells by affecting the metabolic process of tumor cells, showing potential medicinal value.
    In addition, in the field of chemical analysis, 8-hydroxyquinoline copper can be used as an analytical reagent for qualitative and quantitative analysis of metal ions. Because of its selective complexation ability to specific metal ions, it can achieve accurate detection of metal ions by means of the characteristics of complexes formed by reacting with metal ions.
    What is the preparation method of 8-hydroxyquinoline aluminum salt?
    8-Zinc cyanobenzoate phthalocyanine is an important organic optoelectronic material. Although the preparation method is not directly recorded in Tiangong Kaiwu, with reference to the preparation ideas of related substances contained in ancient chemical technology books, the approximate preparation method can be deduced as follows:
    Take an appropriate amount of benzoic acid first, boil it slowly in the kettle, and wait for it to melt. At this time, add a small amount of cyanide, the amount of cyanide needs to be precisely controlled, too much will be overreactive, and too little will be insufficient cyanylation. In this process, keep stirring with bamboo chopsticks to make the two fully blend. When the two are mixed evenly, raise the heat until the contents of the kettle are slightly boiling. Maintain this state for about two hours, so that the carboxyl group of benzoic acid reacts with cyanide to form cyanobenzoic acid.
    Mix the prepared cyanobenzoic acid with zinc salt in a certain ratio. This ratio is crucial and affects the purity and performance of the final product. Then, add an appropriate amount of organic solvent, such as turpentine commonly used in ancient alchemy, to help the two dissolve and fully contact. The mixed liquid is moved into a special porcelain jar, sealed at the mouth of the jar, and buried three feet underground. Here, the temperature and humidity are relatively constant, which is conducive to the slow and orderly reaction. After seven days and nights, take out the porcelain jar and place the mixed liquid in the jar in an open container in a well-ventilated place to allow the turpentine to evaporate naturally.
    When the turpentine has evaporated, the resulting solid crude product is rinsed with water several times to remove unreacted impurities and residual salts. Then, the washed product is placed in the sun to dry. After drying, a fine sieve is used to obtain a fine powder. This powder is the initially prepared 8-cyanobenzoate zinc phthalocyanine. To obtain a purer product, the above steps of rinsing, drying, and sieving can be repeated until the required purity standards are met.
    What are the physical and chemical properties of 8-hydroxyquinoline aluminum salts?
    8-Hydroxyquinoline copper is an important compound with unique physical and chemical properties.
    In terms of its physical properties, 8-hydroxyquinoline copper is mostly green crystalline powder at room temperature, with fine texture. Its melting point is quite high, which makes it stable in a certain temperature range. And the substance is almost insoluble in water, and its solubility in organic solvents is limited. Common organic solvents such as ethanol and ether have poor solubility. However, its solubility will change under certain specific organic solvents or acid-base conditions.
    In terms of chemical properties, the copper ions in 8-hydroxyquinoline copper are in a specific valence state and have certain redox properties. In a suitable redox environment, the valence state of copper ions can change, which can lead to changes in the structure and properties of the compound itself. 8-hydroxyquinoline partially contains coordination atoms such as nitrogen and oxygen, which can form coordination compounds with many metal ions, showing unique coordination chemical properties. Its molecular structure is relatively stable, which is due to the conjugation system in the molecule, which makes it more stable in chemical reactions than some compounds with simple structures, and is not easy to decompose or transform quickly due to general chemical reaction conditions. However, under the conditions of strong oxidizing agents or specific high temperatures, high pressures and catalysts, its structure will be destroyed, and various chemical reactions, such as substitution reactions, addition reactions, etc., will occur, resulting in the formation of new compounds.
    What are the precautions for the use of 8-hydroxyquinoline aluminum salt?
    8-Carboxylpyridine light copper salt is a delicate chemical agent, and many matters need to be paid attention to when using it.
    First, it concerns its preservation. This salt is quite sensitive to the environment, especially afraid of moisture and light. Therefore, it must be stored in a dry, cool and dark place, properly packaged in a special container, and careful to prevent it from contacting water vapor and light in the air, causing it to deteriorate, damaging its chemical activity and use efficiency.
    Furthermore, when using, the operation must be fine. Because of its certain chemical activity, contact with other objects or cause unpredictable reactions. When using, when using clean and dry utensils, use them according to the exact dose, and do not increase or decrease at will. The weighing process must be rigorous, with the help of accurate weighing equipment to achieve the accuracy required for experiments or production.
    Again, safety protection must not be ignored. Although it is not highly toxic, it may be irritating to human skin, respiratory tract, etc. When using, prepare protective equipment, such as gloves, goggles, masks, etc. If it accidentally touches the skin or eyes, rinse with plenty of water immediately and seek medical attention in a timely manner.
    Repeat, the control of reaction conditions is crucial. The reaction in which this salt participates requires strict conditions such as temperature, pH, reaction time, etc. If the temperature is too high or too low, it can cause abnormal reaction rate and affect product formation. Therefore, before the experiment or production, it is necessary to study the best reaction conditions in detail, and closely monitor the process to ensure that the conditions are stable.
    At the end, the treatment after use should not be ignored. The remaining salt should not be discarded at will, but should be properly disposed of in accordance with the chemical waste treatment specifications to prevent environmental pollution. The equipment used should also be cleaned in time to remove residual substances for next use.
    What are the advantages of 8-hydroxyquinoline aluminum salt compared to other similar materials?
    8-Hydroxyquinoline copper has significant advantages over other similar materials.
    8-Hydroxyquinoline copper has a unique structure, which makes it chemically stable. Compared with other materials, 8-Hydroxyquinoline copper is more difficult to chemically react with surrounding substances in a complex and changeable environment, and can maintain its own stability for a long time.
    Its antibacterial performance is excellent. Although many similar materials have antibacterial effects, 8-Hydroxyquinoline copper has better antibacterial ability. It can effectively inhibit and kill a variety of bacteria, fungi and other microorganisms. It can effectively prevent and control crop diseases in the agricultural field and ensure the healthy growth of crops. In the industrial field, it can also prevent material deterioration and damage due to microbial growth.
    Furthermore, 8-hydroxyquinoline copper has good biocompatibility. In biomedicine and other fields with strict biocompatibility requirements, this property is of great significance. When in contact with living organisms, it is not easy to cause adverse reactions, and can be used to prepare drug carriers, biosensors, etc., to help the development of medical technology.
    And 8-hydroxyquinoline copper has excellent optical properties. It can emit unique light under specific conditions and shows great potential in the fields of optical device manufacturing. It can be used to prepare Light Emitting Diodes, fluorescent probes, etc., and contribute to the progress of the optoelectronics industry.
    8-hydroxyquinoline copper stands out in many fields due to its structural, antibacterial, biocompatibility and optical advantages, and occupies an important position in the development of modern technology and industry.