Organic synthesis is the backbone of many industries, from pharmaceuticals and agrochemicals to materials science. The development of novel compounds and efficient reaction pathways relies heavily on the availability of versatile building blocks. N-(2-nitro-1-phenyl-ethyl)aniline, with its distinct molecular structure and reactivity, stands out as a valuable fine chemical intermediate in this domain. For researchers and process chemists, understanding its properties and applications is key to unlocking new synthetic possibilities.
The molecular formula C14H14N2O2 and CAS number 21080-09-1 define N-(2-nitro-1-phenyl-ethyl)aniline. Its structure, featuring both nitro and amine functionalities attached to phenyl and ethyl groups, offers multiple sites for chemical modification. This versatility makes it an attractive precursor for a wide array of complex organic molecules. When chemists search for 'organic synthesis N-(2-nitro-1-phenyl-ethyl)aniline' or 'fine chemical building blocks CAS 21080-09-1', they are often looking for compounds that can participate in various coupling reactions, cyclizations, or functional group transformations.
As a key intermediate, the availability of high-purity N-(2-nitro-1-phenyl-ethyl)aniline is crucial. Manufacturers that can guarantee a consistent purity, often specifying '99% N-(2-nitro-1-phenyl-ethyl)aniline', are preferred. This ensures that reactions proceed with predictable outcomes and that unwanted by-products are minimized. For those looking to 'buy N-(2-nitro-1-phenyl-ethyl)aniline', sourcing from a reputable manufacturer, particularly one based in China known for its chemical production capabilities, can provide a balance of quality and cost.
The utility of this compound extends to the synthesis of various pharmacologically active agents. Its incorporation into larger molecular frameworks can impart specific biological activities or serve as a scaffold for further derivatization. Therefore, 'pharmaceutical intermediate CAS 21080-09-1' is a frequent search term used by drug discovery scientists and process chemists aiming to develop new therapeutic entities. The ability to 'purchase N-(2-nitro-1-phenyl-ethyl)aniline' from a reliable supplier ensures that research and development timelines are maintained.
When engaging with a 'chemical raw material supplier' for N-(2-nitro-1-phenyl-ethyl)aniline, it's advisable to inquire about their production capacity, lead times, and technical support. Understanding the 'N-(2-nitro-1-phenyl-ethyl)aniline manufacturer price' can also help in budget planning for larger scale projects. Ultimately, the strategic use of such fine chemicals, supported by robust supply chains, drives innovation in organic chemistry and its downstream applications.
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