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Specifications of N-Ethylcarbazole丨CAS 86-28-2
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Description: |
Off white crystalline powder |
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Purity: |
99.5% min |
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Related substances: |
0.5% max |
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Max Single impurity: |
0.5% max |
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Tar: |
0.1% max |
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Salt: |
0.1% max |
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Water (KF): |
0.1% max |
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Loss on drying: |
0.5% max |
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Melting point: |
68°C to 70°C |
Transport Information of N-Ethylcarbazole丨CAS 86-28-2
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Parameter |
Specification |
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UN Number |
3077 |
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Class |
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Packing Group |
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H.S. Code |
2933990099 |
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Stability & Reactivity |
The product is chemically stable under standard ambient conditions (room temperature). |
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Storage |
Tightly closed. Store in a closed, dry, ventilated place |
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Condition to Avoid |
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Package |
Manufacturing Information of N-Ethylcarbazole丨CAS 86-28-2
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Parameter |
Specification |
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Capacity |
5-10MT/month |
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Frequency |
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Main Export Countries |
Korea |
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Capacity/Batch |
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Experience |
Commercial production |
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Stock |
Applications of N-Ethylcarbazole丨CAS 86-28-2
1. Organic Synthesis
N-Ethylcarbazole丨CAS 86-28-2 is primarily used as an intermediate compound in the synthesis of more complex organic molecules, especially in the field of heterocyclic chemistry:
● Pharmaceuticals and Bioactive Compounds:
N-Ethylcarbazole is a precursor for synthesizing various pharmaceuticals and bioactive compounds due to its carbazole core, which is found in many biologically active molecules. Its derivatives are sometimes explored in the development of antioxidants, antibacterial agents, and anticancer agents.
● Electronics and Organic Semiconductors:
The carbazole moiety is a building block for organic semiconductors, and N-ethylcarbazole has been used in the synthesis of light-emitting diodes (LEDs) and organic light-emitting diodes (OLEDs) due to its optical and electrical properties. It is employed in the fabrication of organic electronic devices such as organic solar cells.
● Fluorescent Dyes and Sensors:
Its fluorescent properties are harnessed in the design of fluorescent probes and dye-sensitized devices used for applications like sensing, imaging, and biomarker detection.
2. Pharmaceutical and Medical Research
● Potential Drug Development:
N-Ethylcarbazole derivatives are studied for their potential in drug discovery. Research indicates that carbazole derivatives may have anticancer, antiviral, and antibacterial activities. As a result, N-ethylcarbazole is sometimes considered in the synthesis of therapeutic agents targeting various diseases.
● Biological Activity:
Studies suggest that the carbazole structure itself is bioactive, and N-ethylcarbazole derivatives may exhibit beneficial anti-inflammatory, antioxidant, and neuroprotective effects. Some compounds with similar structures have been explored for their antitumor properties.
3. Polymer Chemistry
● Polymerization Initiator:
N-Ethylcarbazole has been explored as an initiator in polymerization reactions for creating conductive polymers. Its ability to participate in various chemical reactions makes it useful in the development of novel polymers with unique electronic or optical properties.
4. Photovoltaics and Solar Cells
● Organic Solar Cells:
N-Ethylcarbazole丨CAS 86-28-2 and its derivatives are sometimes incorporated into organic photovoltaic (OPV) devices, where they help improve the efficiency and stability of the devices. Its role as a hole-transport material in organic solar cells contributes to better charge mobility and overall performance.
5. Specialty Chemicals and Industrial Applications
● Light Emitting Materials:
The compound's ability to emit light under certain conditions makes it a potential candidate in light-emitting materials and display technologies.
● Photochemical Reactions:
N-Ethylcarbazole may be employed in photochemical processes, where its UV absorbance properties are utilized for applications requiring photoactivation or photoinduced reactions.
Benefits of N-Ethylcarbazole丨CAS 86-28-2
1. Versatility in Synthesis
● N-Ethylcarbazole serves as a versatile building block in organic chemistry. Its functional groups allow for diverse chemical transformations, making it a valuable intermediate in the production of a wide range of organic compounds, including pharmaceuticals and electronics materials.
2. Electronic and Optoelectronic Applications
● The compound's electronic properties, such as its charge transport capability, make it a useful material in the development of organic electronic devices, including OLEDs, organic solar cells, and sensors.
3. Potential Therapeutic Uses
● N-Ethylcarbazole derivatives are being studied for their biological activity, particularly in the areas of cancer treatment and infectious diseases. Its potential to be part of drug development pipelines makes it a promising candidate for further medical research.
4. Environmentally Friendly Applications
● N-Ethylcarbazole丨CAS 86-28-2 and its derivatives are increasingly being explored for greener, more sustainable applications. In electronic and photonic applications, the use of organic materials like N-ethylcarbazole reduces the reliance on toxic metals and other environmentally hazardous substances.
5. High Stability and Functionality
● N-Ethylcarbazole is chemically stable and can withstand a variety of environmental conditions, which makes it a suitable candidate for use in long-lasting materials such as light-emitting devices and solar cells that require stable performance over time.
Conclusion
N-Ethylcarbazole丨CAS 86-28-2 is a versatile organic compound with broad applications in pharmaceuticals, electronics, and polymer chemistry. Its fluorescent and electronic properties make it an important material for organic light-emitting diodes (OLEDs), solar cells, and photovoltaic devices. Additionally, its role as an intermediate in drug synthesis and its potential biological activity give it promise in the development of new therapeutic agents. With increasing demand for sustainable and environmentally friendly materials, N-ethylcarbazole's applications are likely to expand, particularly in the fields of organic electronics and renewable energy technologies.

