Product Name:3-methoxy-4-(4-methyl-1H-imidazol-1-yl)benzaldehyde

IUPAC Name:3-methoxy-4-(4-methyl-1H-imidazol-1-yl)benzaldehyde

CAS:870837-18-6
Molecular Formula:C12H12N2O2
Purity:95%+
Catalog Number:CM128944
Molecular Weight:216.24

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CM128944-250mg in stock ȋƅ
CM128944-1g in stock ƻǠƻ
CM128944-5g in stock ǺŭƏ

For R&D use only.

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Product Details

CAS NO:870837-18-6
Molecular Formula:C12H12N2O2
Melting Point:-
Smiles Code:COC1=C(C=CC(C=O)=C1)N1C=NC(C)=C1
Density:
Catalog Number:CM128944
Molecular Weight:216.24
Boiling Point:415.1°C at 760 mmHg
MDL No:MFCD09991722
Storage:Keep in Inert atmosphere, store at 2-8°C.

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Imidazoles
Imidazole is an important five-membered nitrogen-containing heterocyclic compound. Among the numerous heterocyclic compounds, imidazole and its derivatives are regarded as a unique and multifaceted scaffold material due to their diverse applications in industrial, organic and pharmaceutical chemistry. Imidazoles interact in different ways with many therapeutic targets, enzymes and receptors in biological systems and thus exhibit a wide range of biological activities. In particular, several imidazoles can be used as clinical drugs to treat various types of cancer with high therapeutic efficacy. Furthermore, imidazoles are one of the most critical segments in the field of anti-covid-19 virus drug discovery due to their ability to interact with active targets in living systems.
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Benzenes
Benzene is an important organic compound with the chemical formula C6H6, and its molecule consists of a ring of 6 carbon atoms, each with 1 hydrogen atom. Benzene is a sweet, flammable, colorless and transparent liquid with carcinogenic toxicity at room temperature, and has a strong aromatic odor. It is insoluble in water, easily soluble in organic solvents, and can also be used as an organic solvent itself. The ring system of benzene is called benzene ring, and the structure after removing one hydrogen atom from the benzene ring is called phenyl. Benzene is one of the most important basic organic chemical raw materials. Many important chemical intermediates can be derived from benzene through substitution reaction, addition reaction and benzene ring cleavage reaction.

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