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(4-Methyl-benzoylamino)-acetic acid 4-nitro-phenyl ester is a complex organic compound with the chemical formula C16H14N2O6. It is derived from the combination of 4-methyl-benzoic acid and 4-nitro-phenol, with an ester linkage formed between the carboxylic acid group of the former and the hydroxyl group of the latter. (4-Methyl-benzoylamino)-acetic acid 4-nitro-phenyl ester is characterized by a 4-methyl-benzoyl group attached to an amino-acetic acid backbone, with a 4-nitro-phenyl ester group providing additional functionality. It is a white crystalline solid and is often used in the synthesis of pharmaceuticals and other organic compounds due to its unique structure and reactivity.

75152-14-6

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75152-14-6 Usage

Check Digit Verification of cas no

The CAS Registry Mumber 75152-14-6 includes 8 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 5 digits, 7,5,1,5 and 2 respectively; the second part has 2 digits, 1 and 4 respectively.
Calculate Digit Verification of CAS Registry Number 75152-14:
(7*7)+(6*5)+(5*1)+(4*5)+(3*2)+(2*1)+(1*4)=116
116 % 10 = 6
So 75152-14-6 is a valid CAS Registry Number.

75152-14-6Downstream Products

75152-14-6Relevant academic research and scientific papers

Structure-Reactivity Studies on the Equilibrium Reaction between Phenolate Ions and 2-Aryloxazolin-5-ones: Data Consistent with a Concerted Acyl-Group-Transfer Mechanism

Curran, Terence C,Farrar, Charles R.,Niazy, Omima,Williams, Andrew

, p. 6828 - 6837 (2007/10/02)

The rate and equilibrium constants for the reaction between phenolate anions and 2-aryloxazolin-5-ones have been measured as a function of the structures Ar and Ar'.The change in "effective" charge on both phenol-leaving oxygen and endocyclic oxygen from ground to transition state, as determined from the relevant Broensted parameters, is substantial and essentially additive consistent with a concerted displacement mechanism.The stepwise mechanism requires a small change in effective charge on the phenol oxygen because departure of phenolate ion from the tetrahedral intermediate cannot be rate limiting.Hydroxide ion attack on the C-5 atom of the oxazolinone to yield a benzoylglycine has a Hammett ?- dependence which can only arise from a concerted displacement; the rate-limiting step for the stepwise mechanism is the addition of hydroxide and the transition state of the rate-limiting step will therefore not involve much endocyclic C-O bond fission.An inverse deuterium oxide solvent isotope effect indicates that the observed general-acid catalysis has a specific-acid/nucleophilic mechanism; both hydroxide and oxonium ion catalysis are demonstrated by using 18O-labeling experiments to involve nucleophilic attack at the carbonyl (C-5) center.The equilibrium constant for reaction of azide ion with 2-phenyloxazolin-5-ones has been measured; it is suggested that the absence of racemization during azide coupling in peptide synthesis is related to the very unfavorable equilibrium constant for oxazolinone formation compared with that of activated oxygen esters.

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