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Urea, N-(4-nitrophenyl)-N'-2-pyridinyl, also known as 1-(4-nitrophenyl)-3-(2-pyridinyl)urea or NPU, is an organic compound with the chemical formula C12H10N4O3. It is a derivative of urea, featuring a 4-nitrophenyl group attached to the nitrogen atom and a 2-pyridinyl group attached to the other nitrogen atom. Urea, N-(4-nitrophenyl)-N'-2-pyridinyl- is often used as a ligand in coordination chemistry, particularly in the formation of metal complexes. It is also employed in the synthesis of various pharmaceuticals and agrochemicals due to its ability to chelate metal ions. The compound is typically synthesized through the reaction of 4-nitrophenyl isocyanate with 2-aminopyridine, resulting in a product that is soluble in organic solvents and has potential applications in the development of new materials and chemical sensors.

13252-29-4

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13252-29-4 Usage

Check Digit Verification of cas no

The CAS Registry Mumber 13252-29-4 includes 8 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 5 digits, 1,3,2,5 and 2 respectively; the second part has 2 digits, 2 and 9 respectively.
Calculate Digit Verification of CAS Registry Number 13252-29:
(7*1)+(6*3)+(5*2)+(4*5)+(3*2)+(2*2)+(1*9)=74
74 % 10 = 4
So 13252-29-4 is a valid CAS Registry Number.

13252-29-4Downstream Products

13252-29-4Relevant academic research and scientific papers

Synthesis of unsymmetrical urea from aryl- or pyridyl carboxamides and aminopyridines using PhI(OAc)2via in situformation of aryl- or pyridyl isocyanates

Hunjan, Mandeep Kaur,Laha, Joydev K.,Singh, Neha

, p. 18815 - 18823 (2021/10/26)

A tandem synthesis of unsymmetrical ureas (N-aryl-N′-pyridylurea andN,N′-bipyridylurea) from aryl- or pyridyl carboxamides and aminopyridinesviaHofmann rearrangement has been reported. In particular, benzamides, picolinamide, nicotinamide, and isonicotinamide generate reactive intermediate isocyanates,in situ, in the presence of PhI(OAc)2, which upon further reaction with aminopyridines form urea derivatives. As the formation of pyridylisocyanates from their corresponding carboxamidesviaHofmann rearrangement remained unexplored previously, attempts have been made to trap the isocyanates. While the three pyridylisocyanates were trapped as their corresponding carbamates, 3-pyridylisocyanate was isolated and characterized. Unlike closely related previous methods reported for urea synthesis, the current method avoids direct use of isocyanates or eliminates the use of toxic phosgene for thein situgeneration of isocyanates.

Glucokinase Activators Based on N-Aryl-N′-Pyridin-2-Ylurea Derivatives

Semenov,Tarasova,Khramov,Semenova,Inchina,Vakaeva

, p. 209 - 212 (2018/06/07)

A series of previously undescribed N-aryl-N′-pyridin-2-ylureas were prepared via the reaction of 2-aminopyridines with benzoyl azides and tested in vitro as activators of glucokinase. Statistically significant reductions of glucose levels as compared with

Substituent Effects on Pyrid-2-yl Ureas toward Intramolecular Hydrogen Bonding and Cytosine Complexation

Chien, Chia-Hui,Leung, Man-Kit,Su, Jen-Kuan,Li, Gene-Hsiang,Liu, Yi-Hung,Wang, Yu

, p. 1866 - 1871 (2007/10/03)

Equilibria between two conformational isomers of pyrid-2-yl ureas, the (E,Z) and (Z,Z) forms, have been studied in DMF-d7 at -70 °C. Most of them show a small preference for the (E,Z) form with an equilibrium constant Ki around 1-2. However, the Ki value for 1-methyl-2-(3-(pyrid-2-yl)ureido)pyridinium iodide (12) was found to be 14.2 ± 1.2. That is 1 order of magnitude larger than those of the others, which indicates that the positively charged 1-methylpyridinium-2-yl substituent would facilitate the (E,Z) form formation. Pyrid-2-yl ureas bind cytosine in DMF-d7 with binding constants KB ranging from 30 to 1700 M-1. Electron withdrawing substituents, such as the 4-O 2NC6H4- or 1-methylpyridinium-4-yl substituent, preferentially facilitate the intermolecular cytosine complexation with large binding constants.

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