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Dive into the research topics where Rajan Hiralal Naik is active.

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Featured researches published by Rajan Hiralal Naik.


Tetrahedron | 2003

Facile synthesis of meso-substituted dipyrromethanes and porphyrins using cation exchange resins

Rajan Hiralal Naik; Padmakar L. Joshi; Sharada P Kaiwar; Rajesh K. Deshpande

The macroporosity and acidity of cation exchange resins play a crucial role in the synthesis of dipyrromethanes and porphyrins; for the first time, cation exchange resins have been used as heterogeneous solid acid catalysts to produce dipyrromethanes and porphyrins in good yields. The reaction, at room temperature, of substituted aromatic aldehydes with pyrrole catalysed by cation exchange resin afforded the corresponding meso-substituted dipyrromethane in yields ranging from 70 to 80%, indicating the broad scope of the reaction. Further, the condensation of meso-substituted dipyrromethane with similar or different substituted aromatic aldehydes, using cation exchange resins furnished meso-tetrakis-symmetrical and mixed porphyrins, respectively. One-pot synthesis of porphyrins can also be carried out directly from the aldehydes and pyrrole under the above conditions. Acidolysis of the dipyrromethane is negligible under the conditions of the porphyrin-forming reaction.


Tetrahedron | 1991

Contra-thermodynamic trans-esteripication of carbamates by counter-attack strategy: A viable non-phosgene, non-mic route to carbamate pesticides

G.H. Kulkarni; Rajan Hiralal Naik; S.K. Tandel; S. Rajappa

Abstract Treatment of methyl N-methylcarbaaate (1, R= Me) with phosphorus oxychloride and 1-naphthol results in the formation of the transesterified product, 1-naphthyl N-methylcarbamate (2, Ar=1-naphthy1) in good yield. Similarly, ethyl N-methylthiocarbamate (5) is converted to 1-naphthyl N-methylcarbamate (2, Ar= 1-naphthyl) on treatment with phosphorus oxychloride and 1-naphthol. The mechanism of these interesting and industrially important transformations is discussed.


Catalysis Communications | 2005

Polystyrene encapsulation of manganese porphyrins: highly efficient catalysts for oxidation of olefins

Rajan Hiralal Naik; Padmakar L. Joshi; Shubhangi Umbarkar; Rajesh K. Deshpande


Journal of Molecular Catalysis A-chemical | 2005

Immobilization of metallporphyrins on polystyrene: Efficient catalysts for aerobic oxidation of alcohols

Rajan Hiralal Naik; Padmakar L. Joshi; Rajesh K. Deshpande


Catalysis Communications | 2004

Polymer encapsulation of metallophthalocyanines: efficient catalysts for aerobic oxidation of alcohols

Rajan Hiralal Naik; Padmakar L. Joshi; Rajesh K. Deshpande


Archive | 1990

Process for the preparation of aryl esters of N-alkyl carbamic acids

Gurunath Hanmanthrao Kulkarni; Rajan Hiralal Naik; Srinivasachari Rajappa


Archive | 2006

Process for preparing encapsulated metalloporphyrin catalyst and process for oxidation of alcohols

Rajan Hiralal Naik; Padmakar L. Joshi


Archive | 2002

Process for the synthesis of dipyrromethanes

Rajan Hiralal Naik; Padmakar L. Joshi


Archive | 1995

Process for making alkyl N-alkyl or N-aryl-thiocarbamates

Abdul Rakeeb A. S. Deshmukh; Rajan Hiralal Naik; Sagun K. Tandel; Srinivasachari Rajappa


Archive | 1990

VERFAHREN ZUR HERSTELLUNG VON N-ALKYL-CARBAMINSAEUREARYLESTERN.

Gurunath Hanmanthrao Kulkarni; Rajan Hiralal Naik; Srinivasachari Rajappa

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Padmakar L. Joshi

Council of Scientific and Industrial Research

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Srinivasachari Rajappa

Council of Scientific and Industrial Research

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Gurunath Hanmanthrao Kulkarni

Council of Scientific and Industrial Research

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Abdul Rakeeb A. S. Deshmukh

Council of Scientific and Industrial Research

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Sagun K. Tandel

Council of Scientific and Industrial Research

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