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3-methoxyperbenzoic acid is a chemical with a specific purpose. Lookchem provides you with multiple data and supplier information of this chemical.

74127-37-0

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74127-37-0 Usage

Check Digit Verification of cas no

The CAS Registry Mumber 74127-37-0 includes 8 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 5 digits, 7,4,1,2 and 7 respectively; the second part has 2 digits, 3 and 7 respectively.
Calculate Digit Verification of CAS Registry Number 74127-37:
(7*7)+(6*4)+(5*1)+(4*2)+(3*7)+(2*3)+(1*7)=120
120 % 10 = 0
So 74127-37-0 is a valid CAS Registry Number.

74127-37-0Upstream product

74127-37-0Downstream Products

74127-37-0Relevant academic research and scientific papers

The loss of carbon dioxide from activated perbenzoate anions in the gas phase: Unimolecular rearrangement via epoxidation of the benzene ring

Harman, David G.,Ramachandran, Aravind,Gracanin, Michelle,Blanksby, Stephen J.

, p. 7996 - 8005 (2006)

The unimolecular reactivities of a range of perbenzoate anions (X-C 6H5CO3-), including the perbenzoate anion itself (X = H), nitroperbenzoates (X = para-, meta-, orrtho-NO 2), and methoxyperbenzoates (X = para-, meta-OCH3) were investigated in the gas phase by electrospray ionization tandem mass spectrometry. The collision-induced dissociation mass spectra of these compounds reveal product ions consistent with a major loss of carbon dioxide requiring unimolecular rearrangement of the perbenzoate anion prior to fragmentation. Isotopic labeling of the perbenzoate anion supports rearrangement via an initial nucleophilic aromatic substitution at the ortho carbon of the benzene ring, while data from substituted perbenzoates indicate that nucleophilic attack at the ipso carbon can be induced in the presence of electron-withdrawing moieties at the ortho and para positions. Electronic structure calculations carried out at the B3LYP/6-311++G(d,p) level of theory reveal two competing reaction pathways for decarboxylation of perbenzoate anions via initial nucleophilic substitution at the ortho and ipso positions, respectively. Somewhat surprisingly, however, the computational data indicate that the reaction proceeds in both instances via epoxidation of the benzene ring with decarboxylation resulting-at least initially-in the formation of oxepin or benzene oxide anions rather than the energetically favored phenoxide anion. As such, this novel rearrangement of perbenzoate anions provides an intriguing new pathway for epoxidation of the usually inert benzene ring.

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