Understanding the Properties and Synthesis of 4-(Methylamino)-3-Nitrobenzoic Acid
A thorough understanding of a chemical compound's properties and synthesis pathways is fundamental for its effective utilization in research and industry. 4-(Methylamino)-3-Nitrobenzoic Acid, identified by its CAS number 41263-74-5, is a compound with distinct characteristics that make it valuable across several chemical disciplines.
Physically, 4-(Methylamino)-3-Nitrobenzoic Acid typically appears as a yellow solid. Its chemical formula is C8H8N2O4, with a molecular weight of approximately 196.16 g/mol. This structure, featuring both an amino group and a nitro group attached to a benzoic acid core, imbues it with specific reactivity. Its solubility is generally noted in common organic solvents like DMSO and methanol, which are frequently used in synthesis and analysis. While stable under normal conditions, like many organic compounds, it may decompose if exposed to excessive heat or strong chemical agents.
The synthesis of 4-(Methylamino)-3-Nitrobenzoic Acid can be achieved through several established chemical routes. One common method involves the nitration of 4-Methylaminobenzoic Acid using a mixture of nitric and sulfuric acids. Another approach is the reduction of related nitro compounds. For example, a precursor like 4-Nitro-3-(Methylamino)benzoic Acid can be reduced using agents such as sodium dithionite to yield the desired product. These synthesis methods are well-documented and allow for the production of the compound at industrial scales.
NINGBO INNO PHARMCHEM CO.,LTD., a leading chemical manufacturer and supplier in China, ensures the consistent production and availability of 4-(Methylamino)-3-Nitrobenzoic Acid. By understanding both the properties and synthesis of this vital intermediate, researchers and manufacturers can better leverage its potential. Whether for pharmaceutical applications or other areas of fine chemical synthesis, knowledge of these aspects is key to successful implementation.
Physically, 4-(Methylamino)-3-Nitrobenzoic Acid typically appears as a yellow solid. Its chemical formula is C8H8N2O4, with a molecular weight of approximately 196.16 g/mol. This structure, featuring both an amino group and a nitro group attached to a benzoic acid core, imbues it with specific reactivity. Its solubility is generally noted in common organic solvents like DMSO and methanol, which are frequently used in synthesis and analysis. While stable under normal conditions, like many organic compounds, it may decompose if exposed to excessive heat or strong chemical agents.
The synthesis of 4-(Methylamino)-3-Nitrobenzoic Acid can be achieved through several established chemical routes. One common method involves the nitration of 4-Methylaminobenzoic Acid using a mixture of nitric and sulfuric acids. Another approach is the reduction of related nitro compounds. For example, a precursor like 4-Nitro-3-(Methylamino)benzoic Acid can be reduced using agents such as sodium dithionite to yield the desired product. These synthesis methods are well-documented and allow for the production of the compound at industrial scales.
NINGBO INNO PHARMCHEM CO.,LTD., a leading chemical manufacturer and supplier in China, ensures the consistent production and availability of 4-(Methylamino)-3-Nitrobenzoic Acid. By understanding both the properties and synthesis of this vital intermediate, researchers and manufacturers can better leverage its potential. Whether for pharmaceutical applications or other areas of fine chemical synthesis, knowledge of these aspects is key to successful implementation.
Perspectives & Insights
Nano Explorer 01
“A thorough understanding of a chemical compound's properties and synthesis pathways is fundamental for its effective utilization in research and industry.”
Data Catalyst One
“4-(Methylamino)-3-Nitrobenzoic Acid, identified by its CAS number 41263-74-5, is a compound with distinct characteristics that make it valuable across several chemical disciplines.”
Chem Thinker Labs
“Physically, 4-(Methylamino)-3-Nitrobenzoic Acid typically appears as a yellow solid.”