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1-Pyridine-2-yl-piperidin-4-one, also known as PYR-41, is an organic compound that is commonly used in the pharmaceutical and chemical industries.
This compound is an important intermediate in the synthesis of various chemical products, and is commonly used in the production of both upstream and downstream products.
In this article, we will take a closer look at the upstream and downstream products of 1-Pyridine-2-yl-piperidin-4-one.
Upstream Products
One of the primary upstream products of 1-Pyridine-2-yl-piperidin-4-one is 2-cyanopyrrole-5-carboxylic acid.
This compound is used as a precursor in the synthesis of other chemical products, and is often used as a building block for the production of complex organic molecules.
This compound is commonly used in the production of pharmaceuticals, agrochemicals, and other chemical products.
Another upstream product of 1-Pyridine-2-yl-piperidin-4-one is 2,4-diaminopyrimidine.
This compound is used as a building block in the synthesis of other organic compounds, and is commonly used in the production of pharmaceuticals, agrochemicals, and other chemical products.
Downstream Products
One of the primary downstream products of 1-Pyridine-2-yl-piperidin-4-one is S-2-(4-nitrophenyl)butyric acid.
This compound is used as a research chemical and is commonly used in the study of protein thiolation, protein-ligand interactions, and other similar applications.
Another downstream product of 1-Pyridine-2-yl-piperidin-4-one is 1-[2-(4-chlorophenyl)-2-(4,5-dihydroimidazo[1,2-d][1,4]benzoxazepin-11-yl)acetyl]-3-(pyridin-2-ylmethylamino)-urea.
This compound is a research chemical that is commonly used in the study of protein thiolation, protein-ligand interactions, and other similar applications.
In conclusion, 1-Pyridine-2-yl-piperidin-4-one is an important intermediate in the production of a variety of chemical products, both upstream and downstream.
These products are commonly used in the pharmaceutical and chemical industries, and are important building blocks for the production of complex organic molecules.
The synthesis of these products is a complex process that involves a variety of chemical reactions and purification steps.
The precise synthesis method used can vary depending on the specific product, and is typically determined by the manufacturer.