132260-92-5Relevant academic research and scientific papers
Nano copper oxide catalyzed synthesis of symmetrical diaryl sulfides under ligand free conditions
Reddy, K. Harsha Vardhan,Prakash, V. Reddy,Kumar, A. Ashwan,Kranthi,Nageswar
, p. 886 - 891 (2011)
Potassium thiocyanate acts as an efficient sulfur surrogate in C-S cross-coupling reactions mediated by recyclable copper oxide nanoparticles under ligand free conditions. This protocol avoids foul smelling thiols, for the synthesis of a variety of symmetrical diaryl sulfides, via the cross-coupling of different aryl halides with potassium thiocyanate, affording corresponding products in moderate to excellent yields.
Copper oxide nanoparticles supported on graphene oxide-Catalyzed S-arylation: An efficient and ligand-free synthesis of aryl sulfides
Kamal, Ahmed,Srinivasulu, Vunnam,Murty,Shankaraiah, Nagula,Nagesh, Narayana,Reddy, T. Srinivasa,Subba Rao
, p. 2297 - 2307 (2013/10/01)
Copper oxide nanoparticles that are supported on graphene oxide as a catalytic system have been utilized for ligand-free and solvent-free C-S cross-coupling reactions with weak bases such as tri- ethylamine. Symmetrical/unsymmetrical aryl sulfides have been synthesized by the coupling of different aryl halides with aromatic as well as aliphatic sulfides. Surprisingly, aryl chlorides also well reacted with different types of sulfides in the presence of dimethyl sulfoxide and cesium carbonate. Besides, this catalytic system is suitable for the synthesis of phenothiazines via cascade C-S and C-N cross-coupling of ortho-dihalides and ortho-aminobenzothiazoles. In addition, this alternative approach is extremely useful for the synthesis of a variety of symmetrical diaryl sulfides by using thiourea as a sulfur source that is devoid of the foul smell of thiols. Indeed, the calculated E-factor value of our present protocol is 2.52. Furthermore, this protocol is particularly attractive as an environmentally benign and practical method for the synthesis of different aryl sulfides. Moreover, the heterogeneous catalytic system described in this process represents not only a greener approach but retains its significant activity for up to six catalytic cycles.
Copper oxide nanoparticles catalyzed synthesis of aryl sulfides via cascade reaction of aryl halides with thiourea
Reddy, K. Harsha Vardhan,Reddy, V. Prakash,Shankar,Madhav,Anil Kumar,Nageswar
supporting information; experimental part, p. 2679 - 2682 (2011/06/19)
Recyclable copper oxide nanoparticles catalyzed simple and highly efficient protocol for the synthesis of symmetrical aryl sulfides was developed by the cross-coupling of aromatic halides with inexpensive and commercially available thiourea which was used as an effective sulfur surrogate. The present cross-coupling protocol of thiourea, via cascade reaction with various substituted aryl halides, producing desired aryl sulfides, has an added advantage of avoiding foul-smelling thiols.
Reaction of Simple Arenes with FSO3H*SbF5/SO2: One-Pot Synthesis of Aromatic Sulfoxides. Mechanistic Aspects and Synthetic Utility
Laali, Kenneth Khosrow,Nagvekar, Devdatt S.
, p. 1867 - 1874 (2007/10/02)
In a simple one-pot reaction, mono-, di-, tri-, and polyalkylbenzenes, isomeric alkylhalobenzenes, and fluoro-, (trifluoromethyl)-, and 1,3,5-trifluorobenzene were converted to their corresponding diaryl sulfoxides with FSO3H*SbF5 (1:1) (magic acid)/SO2.Dependency of the yields on the acidity (H0) and the arene structure was demonstrated.Reduction of the formed sulfoxide was also observed as a minor pathway to give diaryl sulfide.The reduction is superacid-catalyzed, and protonated sulfoxides are the key intermediates en route to sulfides.Protonation of several functionalized diaryl sulfoxides was also studied in magic acid/SO2 under stable ion conditions.Unlike the parent diphenyl sulfoxide, which is S-protonated, alkyl-, fluoro-, and trifluoromethyl-substituted diaryl sulfoxides O-protonate to give long-lived sulfoxonium ions.The proposed mechanism for the arene/superacid/SO2 system involves sulfination of the arenium ions, O-protonation of the resulting sulfinic acid, dehydration of the oxonium ion "ArSO+" and arylation.In the absence of SO2, the fluorosulfonation, ionization, arylation path becomes dominant.The scope of the reaction is sufficiently broad to be synthetically useful.The methodology is also applicable to unsymmetrical (mixed) diaryl sulfoxides.
