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(4-Methoxybenzyl)dimethylsulfonium is a chemical compound with the molecular formula C10H15O2S. It is a derivative of benzylsulfonium, where a 4-methoxy group is attached to the benzene ring. (4-methoxybenzyl)dimethylsulfonium is characterized by its ability to act as a phase-transfer catalyst, facilitating reactions in both organic and aqueous environments. It is also known for its potential applications in the synthesis of various organic compounds, particularly in reactions involving the transfer of ions or molecules across phase boundaries. The presence of the methoxy group enhances its solubility in polar solvents, making it a valuable tool in organic synthesis and catalysis.

46122-80-9

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46122-80-9 Usage

Check Digit Verification of cas no

The CAS Registry Mumber 46122-80-9 includes 8 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 5 digits, 4,6,1,2 and 2 respectively; the second part has 2 digits, 8 and 0 respectively.
Calculate Digit Verification of CAS Registry Number 46122-80:
(7*4)+(6*6)+(5*1)+(4*2)+(3*2)+(2*8)+(1*0)=99
99 % 10 = 9
So 46122-80-9 is a valid CAS Registry Number.

46122-80-9Relevant academic research and scientific papers

Reactions of charged substrates. 4. The gas-phase dissociation of (4-substituted benzyl) dimethylsulfoniums and -pyridiniums

Buckley, Neil,Maltby, David,Burlingame, Alma L.,Oppenheimer, Norman J.

, p. 2753 - 2762 (1996)

The relative rates for the gas-phase dissociation RX- → R- + X° of five (4-Y-substituted benzyl)-dimethysulfoniums (Y = MeO, Me, H, Cl, and NO2) and 24 (4-Y-substituted benzyl)-3′-Z-pyridiniums (complete series for Z = CN, Cl, CONH2, and H, and 4-methoxy- and 4-nitrobenzyls for Z = F and CH3CO) were measured using liquid secondary ion mass spectrometry. The Hammett plot (vs δΔG° or σ-) is linear for the sulfoniums, but plots for the four pyridinium series have a drastic break between the 4-Cl and 4-NO2 substrates. Bronsted-like plots for the pyridiniums show a strong leaving group effect only for 4-nitrobenzyls. An analysis of these linear free energy relations with supporting evidence from semiempirical computations suggests that collisionally activated pyridinium substrates dissociate by two pathways, direct dissociation and through an ion-neutral complex intermediate. Comparison of these results with results for the solution reactions of some of these compounds shows that the mechanism is different in the gas and solution phases. Sufficient experimental data are not available to assign a mechanism for dissociation to the sulfonium series, but computational results show characteristics of a direct dissociative mechanism.

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