The Role of 2-Hydroxy-5-methyl-3-nitropyridine in Advanced Chemical Research
Advanced chemical research thrives on the availability of specialized molecules that enable the exploration of new synthetic pathways and the creation of novel compounds. Among these essential building blocks, 2-Hydroxy-5-methyl-3-nitropyridine (CAS: 7464-14-4) emerges as a compound of significant interest due to its versatile chemical nature and broad applicability. This nitropyridine derivative is a cornerstone for chemists engaged in cutting-edge research across various scientific disciplines.
The molecular structure of 2-Hydroxy-5-methyl-3-nitropyridine is central to its utility. It combines an aromatic pyridine ring with a hydroxyl group and a nitro group, each offering distinct avenues for chemical modification. The hydroxyl functionality can be involved in hydrogen bonding and can be derivatized to introduce new chemical moieties. The nitro group, being a strong electron-withdrawing group, influences the electronic distribution within the molecule, affecting its reactivity in substitution reactions and its potential for further reduction to an amine. These properties make it an attractive starting material for synthesizing complex heterocyclic systems, which are prevalent in pharmaceuticals and advanced materials.
For researchers involved in drug discovery, the ability to buy 2-Hydroxy-5-methyl-3-nitropyridine from a dependable supplier is crucial. Its role as a pharmaceutical intermediate means that consistent quality and high purity (typically exceeding 98.0%) are non-negotiable. When seeking such compounds, identifying a reputable manufacturer in China can offer a significant advantage, providing access to competitively priced materials without compromising on quality. Understanding the price based on required quantities is an essential part of the research budget planning.
The applications of 2-Hydroxy-5-methyl-3-nitropyridine extend beyond pharmaceutical synthesis. It is a valuable reagent in general organic synthesis, allowing for the introduction of the nitropyridine moiety into larger molecules. This can be useful in developing new dyes, agrochemicals, or functional materials with specific electronic or optical properties. The CAS number 7464-14-4 serves as a precise identifier for researchers to locate and purchase this specific compound, ensuring they acquire the exact material needed for their experiments.
In the dynamic field of chemical research, having access to reliable and high-quality intermediates is fundamental to progress. By partnering with established chemical suppliers, researchers can ensure the smooth execution of their projects, from initial laboratory exploration to potential scale-up. The strategic sourcing of compounds like 2-Hydroxy-5-methyl-3-nitropyridine empowers innovation and drives the development of new technologies and products.
Perspectives & Insights
Bio Analyst 88
“This can be useful in developing new dyes, agrochemicals, or functional materials with specific electronic or optical properties.”
Nano Seeker Pro
“The CAS number 7464-14-4 serves as a precise identifier for researchers to locate and purchase this specific compound, ensuring they acquire the exact material needed for their experiments.”
Data Reader 7
“In the dynamic field of chemical research, having access to reliable and high-quality intermediates is fundamental to progress.”