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1453211-49-8 | 3-ethynyl-2,4-difluoro-1,5-dimethoxybenzene

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Purchase CAS:1453211-49-8 | 3-ethynyl-2,4-difluoro-1,5-dimethoxybenzene,view related peer-reviewed papers,technical documents,similar products,MSDS & more.“Benzene, 3-ethynyl-2,4-difluoro-1,5-dimethoxy-” is a chemical compound with the molecular formula C10H8F2O2 . It is a derivative of benzene, which is one of the fundamental structures in organic chemistry ....
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CAS:1453211-49-8 | 3-ethynyl-2,4-difluoro-1,5-dimethoxybenzene,Description

“Benzene, 3-ethynyl-2,4-difluoro-1,5-dimethoxy-” is a chemical compound with the molecular formula C10H8F2O2. It is a derivative of benzene, which is one of the fundamental structures in organic chemistry.

 

Molecular Structure Analysis

The molecular structure of “Benzene, 3-ethynyl-2,4-difluoro-1,5-dimethoxy-” is based on the benzene ring, which is a cyclic structure with alternating double bonds. The compound has additional functional groups attached to the benzene ring, including ethynyl, difluoro, and dimethoxy groups.

Scientific Research Applications

 

Photoluminescent Materials

The study of photoluminescent materials, such as oligo-polyphenylenevinylene copolymers, reveals applications in the development of novel luminescent materials. These materials exhibit unique fluorescence emission properties due to hydrogen-bond-assisted interactions between chromophores in solid state, indicating potential use in optical devices and sensors (Sierra & Lahti, 2004).

Gas Sensitivity

Research on poly {ethynyl [-2,5-di(methoxy)] benzene} thin films demonstrates applications in gas sensing technologies. These materials show sensitivity and good repeatability towards gases like CH_4 and CO, suggesting their potential use in environmental monitoring and safety applications (Ping, 2009).

Electrochemical and Spectral Properties

Investigations into the electrochemical and spectral properties of thienylene-polyparaphenylenevinylene derivative stereoisomers have uncovered interesting photoluminescent properties. These properties suggest applications in the development of organic electronic materials, such as organic light-emitting diodes (OLEDs) and photovoltaic devices (Lapkowski et al., 2006).

Synthetic Methodologies

The synthesis of novel compounds like E,E-2,5-Dimethoxy-1,4-bis[2-(4-ethylcarboxylatestyril)]benzene through the Heck reaction opens up new synthetic routes for phenylenevinylene systems. These methodologies provide pathways for creating materials with desirable functional groups for use in metal–organic frameworks and supramolecular chemistry (Alzate et al., 2013).

Supramolecular Assemblies

The fabrication of acetylenic macrocycles through Cadiot-Chodkiewicz coupling indicates the potential for constructing tub-shaped tetrameric containers. These containers can encapsulate molecules, suggesting applications in molecular recognition and storage, which are critical in the design of molecular machines and drug delivery systems (Bandyopadhyay et al., 2006).

More Information

Product Name:3-ethynyl-2,4-difluoro-1,5-dimethoxybenzene
Synonyms:3-ethynyl-2,4-difluoro-1,5-dimethoxybenzene;Benzene, 3-ethynyl-2,4-difluoro-1,5-dimethoxy-
CAS:1453211-49-8
MF:C10H8F2O2
MW:198.17
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Mol File:1453211-49-8.mol
 
3-ethynyl-2,4-difluoro-1,5-dimethoxybenzene Chemical Properties
Boiling point 278.2±40.0 °C(Predicted)
density 1.22±0.1 g/cm3(Predicted)

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