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Dive into the research topics where S. Soundararajan is active.

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Featured researches published by S. Soundararajan.


Monatshefte Fur Chemie | 1976

Komplexe von Lanthanidnitraten mit 2-Methylpyridin-1-oxid

L. Ramakrishnan; S. Soundararajan

Complexes of lanthanide nitrates with 2-methylpyridine-1-oxide of the formuleLn(2-MePyO)3(NO3)3 whereLn=Nd, Sm, Tb, Dy and Yb and La(2-MePyO)3(NO3)3·2H2O have been prepared and characterized by chemical analyses, IR spectral, conductance andDTA data. IR spectral data have been interpreted in terms of the coordination of the ligand to the metal through the oxygen of the N−O group. Conductance and IR spectral data show that all the nitrate groups are bidentate and that two of the nitrate groups are bound to the metal in a different manner than the other.


Monatshefte Fur Chemie | 1975

Pyridine-1-oxide complexes of lanthanide iodides

L. Ramakrishnan; S. Soundararajan

Pyridine-1-oxide complexes of lanthanide iodides of the formulaLn(PyO)8I3 whereLn=La, Pr, Nd, Tb, Dy, Er, and Yb have been prepared and characterised by analyses, molecular weight, conductance, infrared and proton NMR data. Proton NMR and IR data have shown the coordination of the ligand to the metal through the oxygen atom of the N−O group. NMR data have been interpreted in terms of a distorted square antiprismatic geometry in solution.


Monatshefte Fur Chemie | 1977

Komplexe von 2,6-Dimethylpyridin-1-oxid mit Lanthanidjodiden

L. Ramakrishnan; S. Soundararajan

Complexes of 2,6-dimethylpyridine 1-oxide with lanthanide iodides of the formulaeLn(2,6-LTNO)5I3 whereLn=La, Tb and Yb,Ln(2,6-LTNO)4I3 whereLn=Pr and Nd and Er(2,6-LTNO)4.5I3 have been prepared and characterised by chemical analysis, infrared and conductance studies. Infrared and conductance data have been interpreted in terms of dimeric (or polymeric) structures involving bridging amine oxide groups.


Monatshefte Fur Chemie | 1976

3-Picoline-N-oxide complexes of rare-earth bromides

P. V. Sivapullaiah; S. Soundararajan

Abstract3-Picoline-N-oxide (3-PicNO) complexes of rare-earth bromides of the formulaMBr3(3-PicNO)8−n·nH2O wheren=0 forM=La, Pr, Nd, Sm Tb or Y andn=2 forM=Ho or Yb have been prepared. Infrared and proton NMR studies indicate that the coordination of the ligand is through oxygen. Conductance data in acetonitrile suggest that two bromide ions are coordinated to the metal ion. Proton NMR studies suggest a bicapped dodecahedral arrangement of the ligands around the metal ion in solution for Pr(III), Nd(III) and Tb(III) complexes.


Monatshefte Fur Chemie | 1976

Preparation, infrared spectra and differential thermal analyses of rare-earth dithiodiacetates

D. K. Koppikar; S. Soundararajan

Dithiodiacetates of the rare-earths of the general formulaMH(DTDA)2·2H2O, whereM=La, Ce, Pr, Nd, Sm, Ho, and Y, and H2DTDA=dithiodiacetic acid, have been prepared and characterised by analyses, i.r. and differential thermal analysis. The i.r. data show that the bonding of the carboxylate group to the metal ion is bidentate. The i.r. andDTA studies reveal the presence of one water molecule in the coordination sphere. A coordination number of nine is suggested for the rare-earth metal ion in these compounds.


Monatshefte Fur Chemie | 1985

Lanthanide perchlorate complexes of 4-nitroquinoline-1-oxide and 5-nitroisoquinoline-2-oxide

R. Kalyanasundaram; N. S. Navaneetham; S. Soundararajan

Novel complexes of lanthanide perchlorates with 4-nitroquinoline-1-oxide (NQNO) and 5-nitroisoquinoline-2-oxide (NIQNO) have been prepared and characterized. The complexes have the general formulaeLn(NQNO)8(ClO4)3 (whereLn=La-Nd), Ln(NQNO)7(ClO4)3 (whereLn=Gd-Yb),Ln(NIQNO)9(ClO4)3 (whereLn=La-Nd), andLn(NIQNO)7(ClO4)3 (whereLn=Gd-Yb). The IR, proton NMR spectral data indicate the coordination of the N—O group of the ligands to he lanthanide ions.Abstractde|Es wurden neue Komplexe von Lanthanidperchloraten mit 4-Nitrochinolin-1-oxid (NQNO) und 5-Nitroisochinolin-2-oxid (NIQNO) dargestellt und charakterisiert. Die Komplexe haben die allgemeinen FormelnLn(NQNO)8(ClO4)3 (mitLn=La-Nd),Ln(NQNO)7(ClO4)3 (mitLn=Gd-Yb),Ln(NIQNO)9(ClO4)3 (mitLn=La-Nd) undLn(NIQNO)7(ClO4)3 (mitLn=Gd-Yb). Die IR- und NMR-Daten zeigen die Koordination der N—O-Gruppe der Liganden zum Lanthanidenion an.


Inorganic and Nuclear Chemistry Letters | 1980

Complexes of lanthanide perchlorates with two new “O,N,O” ligands derived from antipyraldehyde and acetic and benzoic acid hydrazides

R. Jagannathan; S. Soundararajan

Antipyrine is a well known ligand for lanthanides (I). A forage through the organic literature of pyrazolones reveals that the 4-position of antipyrine is amenable to a wide variety of organic reactions. It should thus be possible to introduce suitable functional groups at this position and design new multidentate ligands for metal ions. It is also found that the coordination chemistry of lanthanides is much less well developed and far fewer ligands have been used for complexation with lanthanide ions compared to that of the d-transition metal ions. Keeping these points in view we have reported earlier, complexes of lanthanides with a bidentate ligand N,N-diethyl-antipyrine-4-carboxamide (2). In this communication we report the synthesis of two new ligands from Schiff base condensation of antipyraldehyde and the hydrazides of acetic and benzoic acids and the complexes formed by these hydrazones with lanthanide perchlorates.


Journal of Chemical Sciences | 1981

Lanthanide perchlorate complexes of 4-cyano pyridine-N-oxide, 4-chloro 2-picoline-N-oxide and 4-dimethyl amino-2-picoline-N-oxide

N. S. Navaneetham; S. Soundararajan

Complexes of lanthanide perchlorates with 4-cyano pyridine-1-oxide, 4-chloro 2-picoline-1-oxide and 4-dimethyl-amino 2-picoline-1-oxide have been isolated for the first time and characterized by analysis, conductance, infrared, NMR and electronic spectra. The complexes of 4-cyano pyridine-1-oxides have the composition Ln(CyPO)6(ClO4)3. 2H2O (Ln=La, Sm, Dy and Ho); Ln(CyPO)7 (ClO4)3. 2H2O (Ln=Pr, Nd, Er and Yb); and Ln(CyPO)5 (ClO4)3. 2H2O (Ln=Gd and Tb). The complexes of 4-chloro 2-picoline-1-oxide analyse for the formulae Ln(CpicO)6 (ClO4)3 (Ln=La, Pr, Nd and Ho); and Ln (CpicO)5 (ClO4)3 (Ln=Er and Yb), and those of 4-dimethylamino 2-picoline-1-oxide for Ln(DMPicO)6 (ClO4)3 (Ln=La and Nd); Ln(DMPicO)7 (ClO4)3 (Ln=Gd, Er and Yb); and Ln(DMPicO)8 (ClO4)3 (Ln=Dy and Ho).


Journal of Chemical Sciences | 1980

4-Nitro 2-picoline-l-oxide complexes of lanthanide perchlorates

N. S. Navaneetham; S. Soundararajan

Abstract4-Nitro 2-picoline-l-oxide (NPicO) complexes of the formulae La (NPicO)5 (CIO4)3, Ln2 (NPicO)9 (C1O4)6 (Ln = Pr, Nd, and Gd) and Ln (NPicO)4 (CIO4)3 (Ln == Tb, Dy, Ho and Yb) have been synthesised and characterised by analysis, electrolytic conductance, infrared, proton NMR and electronic spectral data. A tentative coordination number of 6 for all the complexes have been assigned


Journal of Chemical Sciences | 1979

2,4-Lutidine-1-oxide complexes of lanthanide perchlorates

N. S. Navaneetham; S. Soundararajan

Abstract2,4-Lutidine-1-oxide (2,4-LutO) complexes of lanthanide perchlorates of the formulae Ln2(2,4-LutO)13(ClO4)6 (Ln = Pr and Nd) and Ln2(2,4-LutO)15 (ClO4)6 (Ln = La, Tb, Dy, Ho and Yb) have been prepared and characterised by chemical analysis, IR, NMR, conductance and electronic spectral data. Proton NMR data along with the IR data show that the ligand coordinates to the metal ion through the oxygen. Conductance data of the complexes in acetone and nitrobenzene indicate that the perchlorate is not coordinated to the metal ion.

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N. S. Navaneetham

Indian Institute of Science

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L. Ramakrishnan

Indian Institute of Science

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P. V. Sivapullaiah

Indian Institute of Science

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R. Kalyanasundaram

Indian Institute of Science

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C. Premlatha

Indian Institute of Science

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N. Rajasekar

Indian Institute of Science

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D K Koppikar

Indian Institute of Science

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D. K. Koppikar

Indian Institute of Science

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Marjorie J. Vold

Indian Institute of Science

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R. Raman

Indian Institute of Science

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