Ensuring Purity: Analytical Methods for 2-Bromo-4-nitrotoluene (CAS 7745-93-9)
The effectiveness of chemical intermediates in synthesis hinges critically on their purity. For 2-Bromo-4-nitrotoluene (CAS 7745-93-9), a compound vital to pharmaceutical, agrochemical, and specialty chemical industries, rigorous analytical characterization is indispensable. NINGBO INNO PHARMCHEM CO.,LTD., as a leading manufacturer, employs a suite of advanced analytical techniques to guarantee the quality and purity of our products.
Ensuring the absence of impurities and isomeric byproducts is paramount for reproducible synthetic outcomes. The primary analytical methods used to verify the identity and purity of 2-Bromo-4-nitrotoluene include:
Nuclear Magnetic Resonance (NMR) Spectroscopy: Both ¹H NMR and ¹³C NMR are foundational for confirming the molecular structure. ¹H NMR reveals the specific proton environments and their coupling patterns, which are characteristic of the substitution on the aromatic ring. ¹³C NMR provides insight into the carbon framework. These spectroscopic fingerprints are crucial for distinguishing 2-Bromo-4-nitrotoluene from its isomers and verifying the overall structural integrity. Researchers often seek 2-bromo-4-nitrotoluene with documented NMR data to ensure structural accuracy.
Gas Chromatography-Mass Spectrometry (GC-MS): GC-MS is invaluable for detecting and quantifying volatile impurities and isomeric byproducts. Due to potential side reactions during synthesis, isomers such as 4-bromo-2-nitrotoluene or 3-bromo-4-nitrotoluene might be present. GC separates these compounds based on their volatilities and interactions with the stationary phase, while the mass spectrometer provides their molecular weight and fragmentation pattern for definitive identification. The sensitivity of GC-MS allows for trace-level impurity analysis, a critical requirement for pharmaceutical applications. When looking to purchase 2-bromo-4-nitrotoluene, asking for GC-MS analysis reports is a good practice.
High-Performance Liquid Chromatography (HPLC): HPLC, particularly reversed-phase HPLC (RP-HPLC), is another powerful technique for assessing purity and separating closely related isomers. By optimizing the mobile and stationary phases, HPLC can effectively resolve 2-Bromo-4-nitrotoluene from trace impurities and isomers, providing quantitative data on product purity (e.g., ≥99.0%). This method is essential for quality control and batch release.
Melting Point Determination: The melting point of a crystalline solid is a sensitive indicator of its purity. The literature value for pure 2-Bromo-4-nitrotoluene is around 75-78°C. Deviations from this range, or a broad melting range, often indicate the presence of impurities. This simple yet effective method is a quick check for product quality.
NINGBO INNO PHARMCHEM CO.,LTD. is committed to delivering 2-Bromo-4-nitrotoluene that meets the highest standards of purity. Our rigorous quality control protocols, utilizing these advanced analytical techniques, ensure that our clients receive reliable and high-performance intermediates. We invite you to request a quote for CAS 7745-93-9 and experience the assurance of quality from a trusted manufacturer and supplier.
Perspectives & Insights
Core Pioneer 24
“GC separates these compounds based on their volatilities and interactions with the stationary phase, while the mass spectrometer provides their molecular weight and fragmentation pattern for definitive identification.”
Silicon Explorer X
“The sensitivity of GC-MS allows for trace-level impurity analysis, a critical requirement for pharmaceutical applications.”
Quantum Catalyst AI
“When looking to purchase 2-bromo-4-nitrotoluene, asking for GC-MS analysis reports is a good practice.”