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Manabendra Patra
Manabendra Patra
在 nist.edu 的电子邮件经过验证
标题
引用次数
引用次数
年份
Acid hydrazides, potent reagents for synthesis of oxygen-, nitrogen-, and/or sulfur-containing heterocyclic rings
P Majumdar, A Pati, M Patra, RK Behera, AK Behera
Chemical reviews 114 (5), 2942-2977, 2014
3462014
A synthon approach to spiro compounds
R Pradhan, M Patra, AK Behera, BK Mishra, RK Behera
Tetrahedron 62 (5), 779-828, 2006
2742006
Studies on spiroheterocycles, part II: heterocyclization of the spiro compounds containing cyclohexanone and thiobarbituric acid with different bidentate nucleophilic reagents
RK Behera, AK Behera, R Pradhan, A Pati, M Patra
Synthetic communications 36 (24), 3729-3742, 2006
422006
Studies on spiroheterocycles part-I: Installation of biologically active heterocyclic nuclei into spiro compounds derived from cyclohexanone and diphenyl thiobarbituric acid
RK Behera, AK Behera, R Pradhan, M Patra
NISCAIR-CSIR, India, 2006
122006
Microwave-Assisted Synthesis of Spiro (cycloalkane thiazolo-s-tetrazine)
RK Behera, A Pati, M Patra, AK Behera
Phosphorus, Sulfur, and Silicon 184 (11), 2827-2834, 2009
112009
Studies on spiroheterocycles, part III: synthesis of diazaspiroundecanetetraone derivatives containing biologically active heterocycles
RK Behera, AK Behera, R Pradhan, A Pati, M Patra
Phosphorus, Sulfur, and Silicon 184 (3), 753-765, 2009
112009
Effect of organized anionic surfactant system on the kinetics of V (V)‐organic substrate‐initiated polymerization of acrylonitrile
M Patra, BK Sinha
Journal of applied polymer science 64 (9), 1825-1833, 1997
111997
Acrylamide polymerization initiated with the redox system Ce (IV)‐cyclohexanone in micellar phase: A kinetic study
M Patra, BK Sinha
Macromolecular Chemistry and Physics 199 (3), 311-317, 1998
101998
Effect of organized anionic surfactant system on kinetics of polymerization of acrylonitrile initiated by Ce (IV): Citric acid and other organic substrates
M Patra, AK Panigrahi, BK Sinha
Journal of applied polymer science 62 (1), 19-25, 1996
71996
A kinetic study of Ce (IV) initiated polymerization of methyl acrylate in micellar phase
M Patra, BK Sinha
JOURNAL OF POLYMER MATERIALS 12 (4), 313-318, 1995
71995
Synthesis and biological activity of bis (thiadiazolyl/oxadiazolyl/triazolyl) alkanes from dicarboxylic acids
AK Behera, RK Behera, R Pradhan, A Pati, M Patra
INDIAN JOURNAL OF HETEROCYCLIC CHEMISTRY 16 (2), 167-170, 2006
62006
Synthesis and spectral properties of macrocyclic compounds containing 1, 3, 4‐thiadiazole moeties connected by a carbon–oxygen bridge
A Pati, M Patra, RK Behera
Synthetic communications 36 (12), 1801-1808, 2006
62006
Polymerization of methyl acrylate initiated by V (V)‐cyclohexanone redox system in micellar phase
M Patra, BK Sinha
Journal of applied polymer science 66 (11), 2081-2088, 1997
61997
Phosphorus, Sulfur Silicon Relat
RK Behera, AK Behera, R Pradhan, A Pati, M Patra
Elem 184, 753, 2009
52009
Acrylonitrile polymerization initiated by Ce (IV)–cyclohexanone redox system in presence of surfactant
M Patra, AK Behera, RK Behera
Journal of applied polymer science 90 (8), 2066-2072, 2003
52003
POLYMERIZATION OF ACRYLAMIDEINITIATED BY V (V)-CYCLOHEXANONE REDOX SYSTEM IN MICELLAR PHASE: A KINETIC STUDY
M Patra, BK Sinha
Taylor & Francis Group 36 (10), 1459-1473, 1999
51999
Studies on spiroheterocycles, part IV: X-ray crystal structure of 2, 4, 7, 11-tetraphenyl-3-thioxo-2, 4-diaza-spiro [5, 5] undecane-1, 5, 9-triones
RK Behera, AK Behera, R Pradhan, A Pati, M Patra
Res. J. Chem. Environ 10, 18, 2006
42006
Effects of surfactants on acrylonitrile polymerization initiated by a Cr (VI)–cyclohexanone redox system: A kinetic study
M Patra, AK Behera, RK Behera, BK Sinha
Journal of applied polymer science 91 (2), 1147-1153, 2004
32004
Surfactant mediated polymerization kinetics of acrylamide using CR (VI)-cyclohexanone redox system
M Patra, BK Sinha
Taylor & Francis Group 37 (12), 1601-1615, 2000
32000
Polymerization of acrylamide initiated by KMnO4-cyclohexanone redox system in presence of surfactant
M Patra, BK Sinha
Taylor & Francis Group 37 (7), 691-706, 2000
32000
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