Srinivasarao Arulananda Babu
Central Salt and Marine Chemicals Research Institute
Network
Latest external collaboration on country level. Dive into details by clicking on the dots.
Publication
Featured researches published by Srinivasarao Arulananda Babu.
Tetrahedron Letters | 2001
Sengodagounder Muthusamy; Srinivasarao Arulananda Babu; Chidambaram Gunanathan
An efficient method for the preparation of 1,3-dithiolanes from aldehydes and ketones with 1,2-ethanedithiol in the presence of a catalytic amount of anhydrous indium(III) chloride is reported. A mild and highly chemoselective thioacetalization of carbonyl compounds using indium(III) chloride as the catalyst is also described. The desired products were obtained in 71–95% yield.
Tetrahedron | 2002
Sengodagounder Muthusamy; Srinivasarao Arulananda Babu; Chidambaram Gunanathan
Abstract Protection of a variety of carbonyl compounds as thioacetals using indium triflate, a mild Lewis acid catalyst, was achieved at ambient temperature in very good yield. Transthioacetalization of oxyacetals into thioacetals was also achieved in an excellent yield. A mixture of carbonyl compound and its respective oxyacetal was also completely converted into thioacetal in the presence of indium triflate.
Journal of Organic Chemistry | 2008
Yoshihiro Nishimoto; Srinivasarao Arulananda Babu; Makoto Yasuda; Akio Baba
The Friedel-Crafts acylation of arenes with esters by dimethylchlorosilane and 10 mol % of indium tribromide has been achieved. The key intermediate RCOOSi(Cl)Me(2) is generated from alkoxy esters with the evolution of the corresponding alkanes. The scope of the alkoxy ester moiety was wide: tert-butyl, benzyl, allyl, and isopropyl esters were successful. In addition, we demonstrated the direct synthesis of the indanone intermediate 11 of salviasperanol from ester 10.
Tetrahedron | 2000
Sengodagounder Muthusamy; Srinivasarao Arulananda Babu; Chidambaram Gunanathan; Eringathodi Suresh; Parthasarathi Dastidar; Raksh Vir Jasra
Abstract A series of α-diazo carbonyl compounds having cyclopentanone, cyclohexanone and substituted cyclohexanone units with different tether lengths have been synthesized using diazomethane solution or methanesulphonyl azide. The above synthesized α-diazo carbonyl compounds with rhodium(II) acetate dimer furnish cyclic five- or six-ring carbonyl ylide dipoles, which undergo facile 1,3-dipolar cycloaddition with different dipolarophiles to furnish the substituted and functionalized oxatricyclic systems having various ring sizes. Two X-ray crystallographic analyses of compounds 8b and 15a are reported to firmly establish the stereochemistry of the cycloadducts.
Tetrahedron Letters | 2001
Sengodagounder Muthusamy; Chidambaram Gunanathan; Srinivasarao Arulananda Babu
Abstract Intermolecular cycloadditions of five-membered cyclic carbonyl ylides 3 with indole, N -methylindole and N -benzylindole afforded decahydrobenzo[ c ]carbazole 4a–f or decahydrocyclopenta[ c ]carbazole 4g–h derivatives with high regioselectivity. With N -benzoylindole and N -sulphonylindole, decahydrobenzo[ c ]carbazoles 4i,j and the regioisomer decahydrobenzo[ a ]carbazoles 5i,j are isolated. The electron withdrawing substituent reduces both regioselectivity and reactivity of the cycloadditions. This methodology generated oxa-bridged (unnatural) decahydrobenzocarbazole derivatives with complete control of four stereocenters.
Tetrahedron Letters | 2002
Sengodagounder Muthusamy; Srinivasarao Arulananda Babu; Chidambaram Gunanathan
Abstract Facile O–H insertion reactions of α-diazo ketones with aliphatic/aromatic alcohols or benzenethiol have been developed in the presence of indium triflate as a catalyst. These reactions provided good yields of α-alkoxy ketones. A comparative study with other Lewis acids establishes the reactivity of indium triflate in O–H insertion reactions of α-diazo ketones.
Tetrahedron Letters | 2000
Sengodagounder Muthusamy; Srinivasarao Arulananda Babu; Chidambaram Gunanathan
Abstract Treatment of various α-diazo ketones 1 and arylidenetetralones 2 in the presence of rhodium(II) acetate dimer leads to spiro-dioxa ring systems 3 as the only CO addition products with high regio- and chemoselectivity.
Tetrahedron | 2001
Sengodagounder Muthusamy; Srinivasarao Arulananda Babu; Chidambaram Gunanathan; Eringathodi Suresh; Parthasarathi Dastidar; Raksh Vir Jasra
Abstract A series of α-diazo carbonyl compounds tethered to substituted cyclopentanone and cyclohexanone units with different tether lengths have been synthesized using diazomethane solution or methanesulphonyl azide. The above synthesized α-diazo carbonyl compounds with rhodium(II) acetate dimer furnish cyclic five- or six-membered-ring carbonyl ylide dipoles, which undergo facile 1,3-dipolar cycloaddition with p-quinones to furnish various novel oxa-bridged polycyclic systems 10, 13 and 11, 14 as C C and C O addition products of p-quinones. Very interesting unusual cyclization product, tri-oxapolycyclic compounds 12 and 15 were also obtained. Single-crystal X-ray analyses of 11a, 12d and 14a are reported to firmly establish the structure and stereochemistry of the oxa-bridged polycyclic systems. The molecules 11a and 14a exhibit novel C–H⋯O hydrogen bonding motif in the crystal structure. On the other hand, the molecule 12d revealed both O–H⋯O and C–H⋯O motifs in the solid-state architecture.
Tetrahedron Letters | 2002
Sengodagounder Muthusamy; Srinivasarao Arulananda Babu; Chidambaram Gunanathan
Abstract A series of symmetrical α,β-unsaturated ketone systems having multiple π-bonds were synthesized. To generate five-membered-ring carbonyl ylides as intermediates, the rhodium(II)-catalyzed reactions of α-diazo ketones were carried out and the carbonyl ylides reacted with the π-bonded α,β-unsaturated ketone systems. Functionalized spiro dioxa-bridged polycyclic ring systems were produced with high regio- and chemoselectivity in good yields.
Tetrahedron Letters | 2002
Sengodagounder Muthusamy; Srinivasarao Arulananda Babu; Chidambaram Gunanathan
Abstract An efficient protocol for the synthesis of syn -facially bridged norbornane frameworks has been developed via tandem cyclization–cycloaddition reactions of rhodium carbenoids generated from α-diazo ketones. Using this new methodology, various functionalized syn -facially bridged norbornane frameworks have been synthesized in a stereoselective manner.