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4-Phenylheptanedinitrile, also known as 4-phenyl-1,7-heptanedinitrile or 4-phenylheptane-1,7-dicarbonitrile, is an organic compound with the chemical formula C13H14N2. It is a colorless to pale yellow liquid with a molecular weight of 202.27 g/mol. 4-phenylheptanedinitrile is characterized by the presence of a phenyl group (C6H5) attached to a heptane chain (C7H16), with two nitrile groups (CN) at the 1st and 7th carbon positions. 4-Phenylheptanedinitrile is used as a chemical intermediate in the synthesis of various pharmaceuticals, agrochemicals, and other specialty chemicals. It is typically synthesized through the reaction of 4-phenylheptan-1-ol with hydroxylamine hydrochloride and sodium cyanide. Due to its reactive nitrile groups, it can undergo various chemical transformations, such as hydrolysis, reduction, and addition reactions, making it a versatile building block in organic synthesis.

833-55-6

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833-55-6 Usage

Check Digit Verification of cas no

The CAS Registry Mumber 833-55-6 includes 6 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 3 digits, 8,3 and 3 respectively; the second part has 2 digits, 5 and 5 respectively.
Calculate Digit Verification of CAS Registry Number 833-55:
(5*8)+(4*3)+(3*3)+(2*5)+(1*5)=76
76 % 10 = 6
So 833-55-6 is a valid CAS Registry Number.

833-55-6Relevant academic research and scientific papers

Experimental and Computational Models for Side Chain Discrimination in Peptide–Protein Interactions

Lidskog, Anna,Dawaigher, Sami,Solano Arribas, Carlos,Ryberg, Anna,Jensen, Jacob,Bergquist, Karl Erik,Sundin, Anders,Norrby, Per-Ola,W?rnmark, Kenneth

supporting information, p. 10883 - 10897 (2021/07/02)

A bis(18-crown-6) Tr?ger's base receptor and 4-substituted hepta-1,7-diyl bisammonium salt ligands have been used as a model system to study the interactions between non-polar side chains of peptides and an aromatic cavity of a protein. NMR titrations and NOESY/ROESY NMR spectroscopy were used to analyze the discrimination of the ligands by the receptor based on the substituent of the ligand, both quantitatively (free binding energies) and qualitatively (conformations). The analysis showed that an all-anti conformation of the heptane chain was preferred for most of the ligands, both free and when bound to the receptor, and that for all of the receptor-ligand complexes, the substituent was located inside or partly inside of the aromatic cavity of the receptor. We estimated the free binding energy of a methyl- and a phenyl group to an aromatic cavity, via CH-π, and combined aromatic CH-π and π-π interactions to be ?1.7 and ?3.3 kJ mol?1, respectively. The experimental results were used to assess the accuracy of different computational methods, including molecular mechanics (MM) and density functional theory (DFT) methods, showing that MM was superior.

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