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Catalog Number:
43023
CAS Number:
243-59-4
6H-Indolo[2,3-b]quinoxaline
Purity:
≥ 98% (GC)
Documents
$97.95 /200MG
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Product Information

6H-Indolo[2,3-b]quinoxaline is a versatile heterocyclic compound that has garnered attention in various fields of research and industry due to its unique structural properties and potential applications. This compound is recognized for its ability to act as a building block in the synthesis of more complex molecules, making it valuable in the development of pharmaceuticals, particularly in the search for novel therapeutic agents. Its distinct indole and quinoxaline moieties contribute to its biological activity, which has been explored in studies related to anti-cancer, anti-inflammatory, and neuroprotective effects.

Researchers have utilized 6H-Indolo[2,3-b]quinoxaline in the development of targeted drug delivery systems and as a fluorescent probe in biological imaging, showcasing its multifunctionality. Its stability and reactivity under various conditions further enhance its appeal for synthetic chemists looking to innovate in drug design and material science. With its promising applications and ongoing research, 6H-Indolo[2,3-b]quinoxaline stands out as a compound of interest for professionals aiming to advance their projects in medicinal chemistry and related fields.

CAS Number
243-59-4
Purity
≥ 98% (GC)
Molecular Formula
C14H9N3
Molecular Weight
219.25
MDL Number
MFCD00981862
PubChem ID
5356192
Melting Point
297 °C
Appearance
White to orange to green crystalline powder
Conditions
Store at 2 - 8 °C
General Information
CAS Number
243-59-4
Purity
≥ 98% (GC)
Molecular Formula
C14H9N3
Molecular Weight
219.25
MDL Number
MFCD00981862
PubChem ID
5356192
Melting Point
297 °C
Appearance
White to orange to green crystalline powder
Conditions
Store at 2 - 8 °C
Properties
Additional property information coming soon!
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Safety and Regulations
Hazmat
No
Antibiotic
No
DEA-regulated
No
Warnings
-
Applications

6H-Indolo[2,3-b]quinoxaline is widely utilized in research focused on:

  • Pharmaceutical Development: This compound serves as a scaffold in drug design, particularly in developing new treatments for neurological disorders due to its ability to interact with specific receptors in the brain.
  • Fluorescent Probes: It is used in creating fluorescent probes for biological imaging, allowing researchers to visualize cellular processes in real-time, which is crucial in fields like cancer research.
  • Material Science: The compound is explored in the development of organic semiconductors, enhancing the efficiency of electronic devices such as OLEDs (Organic Light Emitting Diodes) and solar cells.
  • Biological Research: It acts as a tool in studying cellular signaling pathways, helping scientists understand complex biological systems and disease mechanisms.
  • Antimicrobial Agents: Research indicates its potential in developing new antimicrobial agents, addressing the growing concern of antibiotic resistance in healthcare.

Citations