CAS · 1643577-43-8
Product Overview
3-Chlorobromobenzene-2,4,5,6-d4 is a high-purity pharmaceutical-intermediates supplied for industrial and specialty chemical applications. Contact our team for specifications, packaging options and lead times.
Product Specifications
| Apperance: | Yellow or colorless liquid |
|---|---|
| Purity: | 99% min |
| Atom%D: | 98% min |
| NMR SpectrumL: | In accordance with the structure |
Applications
3-Chlorobromobenzene-2,4,5,6-d4 is primarily applied as an internal standard and reference material in nuclear magnetic resonance (NMR) spectroscopy, mass spectrometry (MS), and other analytical methods. The presence of deuterium atoms alters the compound's mass without significantly affecting its chemical reactivity, allowing researchers to distinguish it from non-deuterated analogs during quantitative analysis. It is frequently used in pharmaceutical research for studying metabolic pathways, reaction mechanisms, and compound stability by serving as an isotopic tracer. In synthetic chemistry, it functions as a labeled intermediate for producing other deuterated aromatic compounds or halogenated materials that require isotopic labeling for mechanistic or pharmacokinetic investigations. Additionally, 3-Chlorobromobenzene-2,4,5,6-d4 is employed in environmental and forensic analysis for calibration and validation of analytical instruments, ensuring measurement accuracy and reproducibility. Its role extends to the development of advanced materials, such as polymers and coatings, where isotopic labeling assists in understanding diffusion, degradation, and structural integrity.
Benefits
The primary benefit of 3-Chlorobromobenzene-2,4,5,6-d4 lies in its isotopic enrichment and analytical precision. Deuterium labeling enhances spectral resolution and reduces background interference in NMR and MS analyses, allowing scientists to obtain clearer, more reliable data. Its chemical and thermal stability ensures consistent performance under a wide range of experimental conditions, making it suitable for both academic research and industrial applications. The compound's ability to serve as a non-reactive tracer supports detailed study of complex chemical systems without altering reaction kinetics or product composition. In drug discovery and development, it aids in understanding metabolic transformations and bioavailability of halogenated aromatic compounds, thereby improving predictive modeling and safety evaluation. From a practical standpoint, its long shelf life, ease of handling, and compatibility with standard organic solvents contribute to its reliability as a laboratory reagent. Furthermore, its use promotes greater data accuracy, reproducibility, and compliance with regulatory standards in analytical testing.
Conclusion
In summary, 3-Chlorobromobenzene-2,4,5,6-d4 is a valuable isotopically labeled compound that plays a crucial role in modern analytical and research applications. Its deuterium substitution provides distinct advantages in structural studies, quantitative analysis, and synthetic chemistry, making it indispensable in laboratories focused on precision and innovation. With its high stability, analytical clarity, and broad versatility, 3-Chlorobromobenzene-2,4,5,6-d4 continues to be an essential tool for advancing scientific understanding across chemical, pharmaceutical, and materials research fields.
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