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Featured researches published by D.K. Banerjee.


Tetrahedron | 1964

Synthetic investigations on testerone and its analogues—I: The total synthesis of 8-isotestosterone and its anthracene analogue

D.K. Banerjee; V. Paul; S.K. Balasubramanina; P.S.N. Murthy

The total synthesis of 8-isotestosterone (II) and the corresponding anthracene analogue (III) following the benzohydrindane route is reported. Catalytic hydrogenation of trans-1β-acetoxy-8-methyl-4,5-(3′-methyl-4′-hydroxybenzo)-hydrindane (V) followed by oxidation has furnished two isomeric tricyclic keto acetates, viz. 1β,2α-(3′-acetoxycyclopentano)-2,5-dimethyl-6-keto-1α,2,3,4,4aα,-5α,6,7,8,8aα-decahydronaphthalene (VII) and 1β,2α-(3′-acetoxycyclopentano)-2,5-dimethyl-6-keto-1α,2,3,4,4aβ,5,6,7,8,8aβ-decahydronaphthalene (IX) which are cis-non-steroid and cis-steroid configurations of the same cyclopentano-cis-decalins. A difference in the direction of enolization of the keto acetate (VII) in alkylation reaction and enol acetylation towards the methine and the methylene carbon atoms respectively has been observed.


Steroids | 1970

Conversion of an equilenane to the estrane: Synthesis of dl-3-methoxy-17β-carboxy-1,3,5(10)-estratriene

D.K. Banerjee; E.J. Jacob; Narain Mahishi

dl-3-Methoxy-11-oxo-17β-carboxy-1,3,5(10),6,8-estrapentaene has been converted to dl-3-methoxy-17β-carboxy-1,3,5(10)-estratriene in fairly good yield.


Tetrahedron | 1966

Dehydrogenation studies with tetrachloro-o-benzoquinone : Structure of a novel dehydrogenation-addition product of abietic acid

T. R. Kasturi; E. Raghavan; Sukh Dev; D.K. Banerjee

Abstract The structure of the solid adduct, obtained by treatment of methyl abietate with tetra-chloro- o -benzoquinone in xylene has been shown to be 2-[2′,2′-(5′,6′,7′,8′-tetrachloro-benzo-1′,4′ dioxano)]-ethyl-3,4,4a(α),4b,5,6,7,8,8a(α),9-decahydro-4b(β),8(β)-dimethyl-8(α)-carbomethoxyphenanthrene (Ia).


Tetrahedron | 1965

Addition of hydrogen cyanide to 9-methyl- Δ4-octalone-3 and 9β-methyl-8β-hydroxy- Δ4-octalone-3

D.K. Banerjee; V.B. Angadi

Addition of hydrogen cyanide to 9-methyl-Δ4-octalone-3 (IIb), as a model, yielded both cis- and trans-ketonitriles the configurations of which are assigned on the basis of IR spectra of the hydrolysed products. Similar addition of hydrogen cyanide to 9β-methyl-8β-hydroxy-Δ4-octalone-3 (IIc) gave the corresponding cis- and trans-hydroxy-keto-nitriles, configurations of which were proved by their conversion into cis- and trans-keto-nitriles obtained in the model study. In contrast to the model experiment where the trans-product predominated, the cis-isomer was the major product of addition to IIc.


Tetrahedron | 1960

Synthesis of 1,3-dimethyl-1,3-dicarboxycyclohexane-2-acetic acid : An isomer of the degradation product of abietic acid

D.K. Banerjee; S.N. Mahapatra

Abstract A synthesis of 1,3-dimethyl-1,3-dicarboxycyclohexane-2-acetic acid has been described, and proved to be an isomer of the C12-acid—an oxidative degradation product of abietic acid.


Steroids | 1981

The crystal and molecular structure of d1-17β-hydroxy-8α-androst-4-en-3-one (8-isotestosterone)

P. Chakrabarti; D.K. Banerjee; K. Venkatesan

Abstract The molecular conformation of d1 -8-isotestosterone has been determined crystallographically. Crystals of the title compound belong to the space group P21/c with a = 11.449(4), b = 10.962(4), c = 25.860(5) , β = 100.95(4)0, with two molecules in the asymmetric unit. The structure has been refined to a final R value of 0.052 for 2227 reflections. Unlike testosterone, which is a flat molecule, its 8-isomer has a folded conformation. The conformations of the ring-B in the two crystallographically independent molecules (A and B) correspond to the twist form and differ significantly from one another.


Tetrahedron | 1960

Synthetic investigation on the building of ring A of steroids

D.K. Banerjee; J. Dutta; A.S. Rao; E.J. Jacob

Methyl 7-keto-1,2,3,4,4a,5,6,7-octahydronaphthoate (Va) has been prepared by the reduction of 7-methoxy-1,2,3,4-tetrahydronaphthoic acid (III) with lithium and ammonia followed by hydrolysis of the enol ether, esterification and migration of the double bond. Alkylation of Va has led to the substitution at the expected 8-position. Methyl 4-keto-7-methoxy-1,2,3,4-tetrahydronaphthoate (X), an intermediate in the preparation of III, has been converted into methyl 3-methyl-3-cyano-4-keto-7-methoxy-1,2,3,4-tetrahydronaphthoate (XIII).


Steroids | 1970

A new synthesis of dl-3-methoxy-17β-carboxy-1,3,5(10),6,8-estrapentaene

D.K. Banerjee; Narain Mahishi; E.J. Jacob; G. Ramani; D. Devaprabhakara

3-Methyl-4-carboxy-2-(2′-methoxy-6′-naphthyl)cyclopenten-3-acetic acid, prepared from trans methyl 2-methyl-3-carbomethoxycyclopentanon-2-acetate and 2-methoxy-6-lithionaphthalene, on ring closure and catalytic hydrogenation gave dl-3-methoxy-17β-carboxy-1,3,5(10),6,8-estrapentaene.


Archive | 1978

Total synthesis ofdl-9(11)-dehydrotestosterone anddl-testosterone

D.K. Banerjee; K M Damodaran; P.S.N. Murthy; Vincent Paul

Abstract17β-Hydroxy-des-A-androst-9-en-5-one (II, R=OH), prepared fromtrans-1β-hydroxy-8-methyl-4, 5-(3′-methyl-4′-methoxybenzo)-hydrindane (I, R=CH3)′, has been converted intodl-9(II)-dehydrotestosterone (IV, R=OH) anddl-testosterone (IX) in very short sequences of steps, albeit in poor yields.


Tetrahedron | 1966

Studies in sesquiterpenes—XXV : A synthesis of α-selinene

G.L. Chetty; G.S.Krishna Rao; Sukh Dev; D.K. Banerjee

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E.J. Jacob

Indian Institute of Science

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Narain Mahishi

Indian Institute of Science

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P.S.N. Murthy

Indian Institute of Science

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D. Devaprabhakara

Indian Institute of Science

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Sukh Dev

Indian Institute of Science

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Vincent Paul

Indian Institute of Science

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B. Sugvanam

Indian Institute of Science

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C.Someswara Rao

Indian Institute of Science

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E. Raghavan

Indian Institute of Science

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