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Atomfair 6,7-Dimethoxyindole C10H11NO2
Description 6,7-Dimethoxyindole (CAS No. 31165-13-6) is a high-purity indole derivative with the molecular formula C10H11NO2. This compound, also known as 6,7-dimethoxy-1H-indole, is a versatile building block in organic synthesis and pharmaceutical research. Its unique dimethoxy-substituted indole structure makes it valuable for the development of bioactive molecules, including alkaloids and serotonin analogs. Our product is rigorously tested for purity and consistency, ensuring optimal performance in research applications. Available in various quantities, it is ideal for medicinal chemistry, drug discovery, and material science research.
Description
Description
6,7-Dimethoxyindole (CAS No. 31165-13-6) is a high-purity indole derivative with the molecular formula C10H11NO2. This compound, also known as 6,7-dimethoxy-1H-indole, is a versatile building block in organic synthesis and pharmaceutical research. Its unique dimethoxy-substituted indole structure makes it valuable for the development of bioactive molecules, including alkaloids and serotonin analogs. Our product is rigorously tested for purity and consistency, ensuring optimal performance in research applications. Available in various quantities, it is ideal for medicinal chemistry, drug discovery, and material science research.
- CAS No: 31165-13-6
- Molecular Formula: C10H11NO2
- Molecular Weight: 177.20
- Exact Mass: 177.078978594
- Monoisotopic Mass: 177.078978594
- IUPAC Name: 6,7-dimethoxy-1H-indole
- SMILES: COC1=C(C2=C(C=C1)C=CN2)OC
- Synonyms: 31165-13-6, 6,7-Dimethoxyindole, 1H-Indole, 6,7-dimethoxy-, DTXSID50185093, DTXCID60107584
Application
6,7-Dimethoxyindole is widely used as a key intermediate in the synthesis of complex alkaloids and pharmaceutical compounds. Researchers utilize it in the development of serotonin receptor modulators due to its structural similarity to indoleamine neurotransmitters. It is also employed in material science for the preparation of organic semiconductors and fluorescent dyes. Additionally, this compound serves as a precursor in the synthesis of natural product analogs for biological activity studies.
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