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Product Line: Electronic Chemicals

2-chloro-9H-carbazole

CAS 10537-08-3

Molecular structure of 2-chloro-9H-carbazole

CAS · 10537-08-3

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Product Overview

2-chloro-9H-carbazole丨CAS 10537-08-3 is an organic compound that plays a significant role in various fields, particularly in the synthesis of advanced materials and pharmaceuticals. It is a derivative of carbazole, where a chlorine atom is substituted at the 2-position of the carbazole ring. This modification imparts unique properties to the compound, making it useful in different applications. Here are the primary applications and benefits of 2-chloro-9H-carbazole:

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Product Specifications

Appearance Off-white to light yellow powder
Purity 98% min (HPLC)
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Applications

1. Pharmaceutical Industry:

- Intermediate in Drug Synthesis: 2-Chloro-9H-carbazole is used as an intermediate in the synthesis of pharmaceutical compounds. It serves as a building block for various active pharmaceutical ingredients (APIs) due to its ability to introduce the carbazole structure into complex molecules.

- Anticancer Agents: Some derivatives of 2-chloro-9H-carbazole丨CAS 10537-08-3 have shown potential as anticancer agents, particularly in the development of compounds that can inhibit cell proliferation or induce apoptosis in cancer cells.

2. Organic Electronics:

- Organic Semiconductors: This compound is used in the development of organic semiconductors for applications in organic light-emitting diodes (OLEDs), organic photovoltaic cells (OPVs), and organic field-effect transistors (OFETs). Its ability to enhance charge transport and stability makes it valuable in these devices.

- Electroluminescent Materials: 2-Chloro-9H-carbazole is used as a precursor in the synthesis of electroluminescent materials for OLEDs. These materials are essential for creating the light-emitting layers in OLED displays and lighting.

3. Materials Science:

- Polymer Synthesis: The compound is employed in the synthesis of conjugated polymers and copolymers. These polymers are used in various electronic and optoelectronic applications, where the carbazole unit contributes to the overall stability and performance of the material.

- Photoconductive Materials: 2-Chloro-9H-carbazole derivatives are used in the development of photoconductive materials, which have applications in imaging systems, photodetectors, and other optoelectronic devices.

4. Dye and Pigment Industry:

- Colorants: 2-Chloro-9H-carbazole can be used in the synthesis of dyes and pigments. The carbazole ring structure is known for producing vibrant colors, and the addition of a chlorine atom can modify the color properties, making it useful in textile dyes, inks, and coatings.

5. Chemical Research:

- Synthetic Research: In chemical research, 2-chloro-9H-carbazole丨CAS 10537-08-3 is utilized as a starting material or intermediate in the synthesis of new compounds. Its reactivity allows for various chemical modifications, making it a versatile tool for researchers exploring new materials and drug candidates.

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Benefits

1. Versatility in Synthesis:

- Flexible Building Block: 2-Chloro-9H-carbazole is a versatile building block in organic synthesis. Its ability to undergo further chemical transformations makes it useful for creating a wide range of complex molecules, including pharmaceuticals and advanced materials.

2. Enhanced Electronic Properties:

- Improved Charge Transport: In organic electronic applications, the presence of the chlorine atom can enhance the electronic properties of carbazole-based materials, leading to improved charge transport and stability in devices such as OLEDs and OPVs.

3. Chemical Stability:

- Thermal and Chemical Resistance: The carbazole core, combined with the chlorine substituent, imparts good thermal and chemical stability to materials derived from 2-chloro-9H-carbazole. This stability is crucial for the longevity and performance of electronic devices and pharmaceuticals.

4. Pharmaceutical Relevance:

- Potential Therapeutic Value: Derivatives of 2-chloro-9H-carbazole丨CAS 10537-08-3 have shown promise in the development of therapeutic agents, particularly in oncology. The carbazole structure is known to interact with biological targets, making it a valuable scaffold in drug discovery.

5. Optoelectronic Benefits:

- Tunable Optoelectronic Properties: The electronic properties of materials derived from 2-chloro-9H-carbazole can be tuned by modifying the chemical structure, allowing for the optimization of performance in optoelectronic applications.

6. Colorant Properties:

- Vibrant and Stable Pigments: In the dye and pigment industry, 2-chloro-9H-carbazole contributes to the production of vibrant and stable colorants, which are important for various industrial applications.

Precautions and Considerations:

1. Handling and Safety:

- Toxicity and Irritation: Like many organic chemicals, 2-chloro-9H-carbazole should be handled with care. It may be toxic or irritating to the skin, eyes, and respiratory system. Proper personal protective equipment (PPE) should be used when handling this compound.

2. Environmental Impact:

- Disposal: Waste materials containing 2-chloro-9H-carbazole丨CAS 10537-08-3 should be disposed of according to local regulations to minimize environmental impact. Proper waste management practices are essential to avoid contamination.

3. Cost and Availability:

- Considerations for Large-Scale Use: Depending on the application, the cost of 2-chloro-9H-carbazole may be a factor in its large-scale use. Researchers and manufacturers should consider the availability and cost-effectiveness of the compound when planning production.

Conclusion:

2-chloro-9H-carbazole丨CAS 10537-08-3 is a valuable compound with diverse applications in the pharmaceutical, electronic, and materials industries. Its role as an intermediate in drug synthesis, its use in organic electronics, and its contribution to the development of advanced materials highlight its importance. The benefits of enhanced electronic properties, versatility in synthesis, and chemical stability make it a crucial component in various high-tech applications. Proper handling, environmental considerations, and cost management are important factors to ensure its safe and effective use.

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Conclusion

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