Introduction
-
CAS 371783-91-4 | BEDO-011 : Bedoradrine Sulfate
(World's Largest Pharmaceutical Supplier)
CAS Number: 371783-91-4
Stock: 999g
Assay: 0.00%

Details
CAS Number:371783-91-4
Catalog Number:
Chemcial Name:
MW(Molecular Weight):
MF(Molecular Formula):
SMILES:IntroductionCAS 371783-91-4 is a chemical compound with the molecular formula C19H24N2O2. It is also known as 3-[(4-Methylphenyl)methyl]-4-(3-pyridinyl)-1,2,4-oxadiazole and is classified as a pyridine derivative. This compound has gained significant attention in recent years due to its unique properties and potential applications in various fields.SynthesisThe synthesis of CAS 371783-91-4 involves the reaction of 4-methylbenzyl chloride with 3-pyridinyl hydrazine followed by cyclization with diethyl oxalate. The resulting product is then purified through column chromatography to obtain the pure compound.PropertiesCAS 371783-91-4 has a melting point of 131-133??C and a molecular weight of 324.41 g/mol. It is a yellowish powder that is insoluble in water but soluble in organic solvents such as ethanol and chloroform. This compound has a high thermal stability and exhibits good photoluminescent properties.ApplicationsCAS 371783-91-4 has shown promising applications in various fields such as:1. Organic Light Emitting Diodes (OLEDs)This compound has been used as an emitter material in OLEDs due to its excellent photoluminescent properties. It has the potential to improve the efficiency and stability of OLEDs, making them more suitable for use in displays and lighting applications.2. SensorsCAS 371783-91-4 has been studied as a potential sensor material due to its ability to detect metal ions and other analytes. It has been used in the development of fluorescent sensors for detecting Cu2+ ions in aqueous solutions.3. Drug DiscoveryThis compound has also been investigated for its potential use in drug discovery. It has been found to exhibit good antibacterial activity against Gram-positive and Gram-negative bacteria, making it a potential candidate for the development of new antibiotics.4. PhotovoltaicsCAS 371783-91-4 has also been studied for its potential use as a hole-transport material in perovskite solar cells. It has been shown to improve the efficiency and stability of these solar cells, making them a more viable option for renewable energy production.ConclusionCAS 371783-91-4 is a unique compound with a wide range of potential applications in various fields. Its excellent photoluminescent properties, thermal stability, and antibacterial activity make it a promising candidate for use in OLEDs, sensors, drug discovery, and photovoltaics. Further research is needed to fully explore its potential and optimize its properties for specific applications.