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N,N-dimethyl-3-((trifluoromethyl)thio)aniline is an organic compound with the chemical formula C9H10F3NS. It is a derivative of aniline, featuring a trifluoromethylthio group attached to the 3-position of the aniline ring. N,N-dimethyl-3-((trifluoromethyl)thio)aniline is characterized by its two methyl groups attached to the nitrogen atom, which contribute to its lipophilic nature. It is a colorless to pale yellow liquid and is soluble in organic solvents. Due to its unique structure, it has potential applications in the synthesis of pharmaceuticals, agrochemicals, and other specialty chemicals. The compound's properties, such as its reactivity and stability, make it a valuable intermediate in various chemical reactions.

2402-63-3

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2402-63-3 Usage

Check Digit Verification of cas no

The CAS Registry Mumber 2402-63-3 includes 7 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 4 digits, 2,4,0 and 2 respectively; the second part has 2 digits, 6 and 3 respectively.
Calculate Digit Verification of CAS Registry Number 2402-63:
(6*2)+(5*4)+(4*0)+(3*2)+(2*6)+(1*3)=53
53 % 10 = 3
So 2402-63-3 is a valid CAS Registry Number.

2402-63-3Downstream Products

2402-63-3Relevant academic research and scientific papers

Transition-Metal-Free ipso-Trifluoromethylthiolation of Lithium Aryl Boronates

Shen, Feng,Zheng, Hanliang,Xue, Xiao-Song,Lu, Long,Shen, Qilong

, p. 6347 - 6351 (2019/08/20)

A transition-metal-free direct trifluoromethylthiolation of the ipso-carbon of lithium aryl boronates with trifluoromethanesulfenate under mild conditions was described. In addition, late-stage site-selective C-H borylation/trifluoromethylation and C-Cl b

Fundamental studies and development of nickel-catalyzed trifluoromethylthiolation of aryl chlorides: Active catalytic species and key roles of ligand and traceless MeCN additive revealed

Yin, Guoyin,Kalvet, Indrek,Englert, Ulli,Schoenebeck, Franziska

supporting information, p. 4164 - 4172 (2015/04/14)

A catalytic protocol to convert aryl and heteroaryl chlorides to the corresponding trifluoromethyl sulfides is reported herein. It relies on a relatively inexpensive Ni(cod)2/dppf (cod = 1,5-cyclooctadiene; dppf = 1,1′-bis(diphenylphosphino)ferrocene) catalyst system and the readily accessible coupling reagent (Me4N)SCF3. Our computational and experimental mechanistic data are consistent with a Ni(0)/Ni(II) cycle and inconsistent with Ni(I) as the reactive species. The relevant intermediates were prepared, characterized by X-ray crystallography, and tested for their catalytic competence. This revealed that a monomeric tricoordinate Ni(I) complex is favored for dppf and Cl whose role was unambiguously assigned as being an off-cycle catalyst deactivation product. Only bidentate ligands with wide bite angles (e.g., dppf) are effective. These bulky ligands render the catalyst resting state as [(P-P)Ni(cod)]. The latter is more reactive than Ni(P-P)2, which was found to be the resting state for ligands with smaller bite angles and suffers from an initial high-energy dissociation of one ligand prior to oxidative addition, rendering the system unreactive. The key to effective catalysis is hence the presence of a labile auxiliary ligand in the catalyst resting state. For more challenging substrates, high conversions were achieved via the employment of MeCN as a traceless additive. Mechanistic data suggest that its beneficial role lies in decreasing the energetic span, therefore accelerating product formation. Finally, the methodology has been applied to synthetic targets of pharmaceutical relevance.

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