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1,3-Dibromobenzene-d4 CAS 1616983-07-3 - Deuterated Aromatic Intermediate - Aizawl

1,3-Dibromobenzene-d4 CAS 1616983-07-3 - Deuterated Aromatic Intermediate - Aizawl
Location: Mission Vengthlang, Aizawl View Map
Posted By: uchemsales
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Posted On: 20-March-2026 15:17 PM

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Description

1,3-Dibromobenzene-d4 (CAS 1616983-07-3) is a deuterium-labeled aromatic compound in which hydrogen atoms on the benzene ring are replaced by deuterium. This isotopically labeled derivative of 1,3-dibromobenzene is widely used in advanced chemical research, analytical studies, and isotopic labeling applications.

Chemical Characteristics
1,3-Dibromobenzene-d4 typically appears as a colorless to light yellow liquid. It retains the core reactivity of standard dibromobenzene while offering the advantages of deuterium labeling. The presence of two bromine atoms allows for further functionalization through cross-coupling reactions such as Suzuki, Heck, and Sonogashira coupling, while the deuterium atoms enable precise tracking in reaction mechanisms.

Applications
Isotopic Labeling and Mechanistic Studies
This compound is commonly used in isotopic labeling experiments to investigate reaction pathways, kinetic isotope effects, and hydrogen–deuterium exchange processes.

Analytical Chemistry
1,3-Dibromobenzene-d4 serves as a reference standard or internal standard in NMR spectroscopy and mass spectrometry, improving accuracy in structural analysis and quantitative measurements.

Organic Synthesis
The dibromo functionality makes it a versatile intermediate for synthesizing substituted aromatic compounds and advanced materials. It is particularly useful in the preparation of labeled organic molecules for research purposes.

Materials and Pharmaceutical Research
Deuterated aromatic compounds are increasingly used in materials science and pharmaceutical studies to explore molecular behavior, stability, and metabolic pathways.

Research Value
By combining reactive bromine substituents with deuterium labeling, 1,3-dibromobenzene-d4 offers both synthetic versatility and analytical precision. It is a valuable tool for researchers working in organic chemistry, materials science, and pharmaceutical development.