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5433-76-1

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5433-76-1 Usage

General Description

Benzhydrylsulfonylbenzene is an organic compound that consists of a benzene ring attached to a sulfonyl group, which in turn is attached to another benzene ring. It is also known as diphenylsulfone and is commonly used as a heat-resistant and hardening plasticizer in the production of epoxy resins and plastics. It is also used as a starting material for the synthesis of various pharmaceuticals and dyes. Benzhydrylsulfonylbenzene has a high degree of thermal stability and is resistant to oxidation, making it valuable in the production of high-performance materials. It is also used in the synthesis of flame retardants and as a solvent in organic reactions. Overall, benzhydrylsulfonylbenzene is a versatile chemical with various industrial applications.

Check Digit Verification of cas no

The CAS Registry Mumber 5433-76-1 includes 7 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 4 digits, 5,4,3 and 3 respectively; the second part has 2 digits, 7 and 6 respectively.
Calculate Digit Verification of CAS Registry Number 5433-76:
(6*5)+(5*4)+(4*3)+(3*3)+(2*7)+(1*6)=91
91 % 10 = 1
So 5433-76-1 is a valid CAS Registry Number.

5433-76-1SDS

SAFETY DATA SHEETS

According to Globally Harmonized System of Classification and Labelling of Chemicals (GHS) - Sixth revised edition

Version: 1.0

Creation Date: Aug 19, 2017

Revision Date: Aug 19, 2017

1.Identification

1.1 GHS Product identifier

Product name [benzenesulfonyl(phenyl)methyl]benzene

1.2 Other means of identification

Product number -
Other names 1,1-diphenyl-1-phenylsulfonylmethane

1.3 Recommended use of the chemical and restrictions on use

Identified uses For industry use only.
Uses advised against no data available

1.4 Supplier's details

1.5 Emergency phone number

Emergency phone number -
Service hours Monday to Friday, 9am-5pm (Standard time zone: UTC/GMT +8 hours).

More Details:5433-76-1 SDS

5433-76-1Relevant articles and documents

Pyridine-catalyzed desulfonative borylation of benzyl sulfones

Maekawa, Yuuki,Ariki, Zachary T.,Nambo, Masakazu,Crudden, Cathleen M.

supporting information, p. 7300 - 7303 (2019/08/15)

Herein, we report the transition-metal free, pyridine-catalyzed desulfonative borylation of benzyl sulfones with bis(pinacolato)diboron (B2pin2). A variety of benzhydryl- and benzyl boronic esters could be synthesized from readily prepared sulfone derivatives. The borylation of cyclic sulfones accompanied by ring opening also proceeded to afford the corresponding sulfonate, which could be converted into functionalized sulfones and sulfonamides.

Modular synthesis of triarylmethanes through palladium-catalyzed sequential arylation of methyl phenyl sulfone

Nambo, Masakazu,Crudden, Cathleen M.

, p. 742 - 746 (2014/01/23)

Triarylmethanes, which are valuable structures in materials, sensing and pharmaceuticals, have been synthesized starting from methyl phenyl sulfone as an inexpensive and readily available template. The three aryl groups were installed through two sequential palladium-catalyzed C-H arylation reactions, followed by an arylative desulfonation. This method provides a new synthetic approach to multisubstituted triarylmethanes using readily available haloarenes and aryl boronic acids, and is also valuable for the preparation of unexplored triarylmethane-based materials and pharmaceuticals. Unsymmetric triarylmethanes have been synthesized starting from methyl phenyl sulfone as an inexpensive and readily available template. The three aryl groups were installed through two sequential palladium-catalyzed C-H arylation reactions, followed by an arylative desulfonation. Copyright

Nucleophilicity and nucleofugality of phenylsulfinate (PhSO 2-): A key to understanding its ambident reactivity

Baidya, Mahiuddin,Kobayashi, Shinjiro,Mayr, Herbert

supporting information; experimental part, p. 4796 - 4805 (2010/06/17)

Second-order rate constants for the reactions of the phenylsulfinate ion PhSO2- with benzhydrylium ions Ar2CH + have been determined in DMSO, acetonitrile, and aqueous acetonitrile solution using laser-flash and stopped-flow techniques. The rate constants follow the correlation equation log k (20 °C) = s(N + E), which allows the determination of the nucleophile-specific parameters N and s for PhSO2- in different solvents. With N = 19.60, PhSO 2- is a slightly weaker nucleophile than malonate and azide ions in DMSO. While PhSO2- reacts with highly stabilized benzhydrylium ions to give benzhydryl phenyl sulfones exclusively, highly reactive benzhydrylium ions give mixtures of sulfones Ar 2CH-SO2Ph and sulfinates Ar2CH-OS(O)Ph; the latter rearrange to the thermodynamically more stable sulfones through an ionization recombination sequence. Sulfones generated from PhSO2 - and stabilized amino-substituted benzhydrylium ions undergo heterolysis in aqueous acetonitrile and the rate of formation of the colored benzhydrylium ions was followed spectrophotometrically by stopped-flow techniques. The ranking of the electrofugalities of the benzhydrylium ions (i.e., the relative ionization rates of Ar2CH-SO2Ph) was not the inverse of the ranking of their electrophilicities (i.e., the relative reactivities of Ar2CH+ with nucleophiles), which was explained by differences in Marcus intrinsic barriers. While sulfones are thermodynamically more stable than the isomeric sulfinates, the intrinsic barriers for the attack of benzhydrylium ions at the oxygen of PhSO 2- are significantly lower than the intrinsic barriers for S-attack, and the activation energies for the attack of carbocations at sulfur are only slightly smaller than those for attack at oxygen. Because reactions of PhSO2- with carbocations of an electrophilicity E > -2 (i.e., carbocations which are more reactive than Ph3C+) are diffusion-controlled, the regioselectivities of the reactions of PhSO 2- with ordinary carbocations do not reflect relative activation energies.

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