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Catalog Number:
31137
CAS Number:
6336-32-9
5,11-Dihydroindolo[3,2-b]carbazole
Purity:
≥ 98% (HPLC)
Documents
$173.56 /250MG
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Product Information

5,11-Dihydroindolo[3,2-b]carbazole is a versatile compound recognized for its unique structural properties and potential applications in various fields. This compound, often utilized in organic synthesis, exhibits interesting photophysical properties, making it a candidate for use in organic light-emitting diodes (OLEDs) and other optoelectronic devices. Its ability to act as a building block in the synthesis of more complex molecules enhances its relevance in pharmaceutical research, particularly in the development of novel therapeutic agents.

Researchers have noted the compound's potential in the field of materials science, where it can be employed in the creation of advanced materials with tailored electronic properties. Additionally, its unique structure may contribute to biological activity, suggesting possible applications in drug discovery and development. With its promising characteristics, 5,11-Dihydroindolo[3,2-b]carbazole stands out as a valuable compound for professionals seeking innovative solutions in chemistry and materials science.

CAS Number
6336-32-9
Purity
≥ 98% (HPLC)
Molecular Formula
C18H12N2
Molecular Weight
256.31
MDL Number
MFCD09879258
PubChem ID
95838
Melting Point
460 ?C
Appearance
White to yellow to green crystalline powder
Conditions
Store at RT
General Information
CAS Number
6336-32-9
Purity
≥ 98% (HPLC)
Molecular Formula
C18H12N2
Molecular Weight
256.31
MDL Number
MFCD09879258
PubChem ID
95838
Melting Point
460 ?C
Appearance
White to yellow to green crystalline powder
Conditions
Store at RT
Properties
Additional property information coming soon!
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Safety and Regulations
Hazmat
No
Antibiotic
No
DEA-regulated
No
Warnings
-
Applications

5,11-Dihydroindolo[3,2-b]carbazole is widely utilized in research focused on:

  • Organic Electronics: This compound is used in the development of organic light-emitting diodes (OLEDs) and organic photovoltaics (OPVs), offering advantages like flexibility and lightweight properties compared to traditional materials.
  • Pharmaceuticals: It has shown potential as a lead compound in drug discovery, particularly in developing treatments for neurodegenerative diseases, due to its ability to interact with biological targets effectively.
  • Photochemistry: The compound is employed in photochemical studies, where its unique structure allows researchers to explore light-induced reactions, enhancing the understanding of energy transfer processes.
  • Material Science: It serves as a building block for synthesizing novel materials with specific electronic properties, making it valuable for creating advanced materials in sensors and transistors.
  • Biological Research: Researchers utilize it for studying cellular mechanisms and pathways, as its derivatives can act as probes to visualize and track biological processes in real-time.

Citations