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  • 1
    Publication Date: 1993-07-01
    Print ISSN: 0024-9297
    Electronic ISSN: 1520-5835
    Topics: Chemistry and Pharmacology , Physics
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  • 2
    ISSN: 1520-5835
    Source: ACS Legacy Archives
    Topics: Chemistry and Pharmacology , Physics
    Type of Medium: Electronic Resource
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  • 3
    Electronic Resource
    Electronic Resource
    Weinheim : Wiley-Blackwell
    Advanced Materials 4 (1992), S. 239-242 
    ISSN: 0935-9648
    Keywords: Chemistry ; Polymer and Materials Science
    Source: Wiley InterScience Backfile Collection 1832-2000
    Topics: Chemistry and Pharmacology , Mechanical Engineering, Materials Science, Production Engineering, Mining and Metallurgy, Traffic Engineering, Precision Mechanics , Physics
    Additional Material: 7 Ill.
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  • 4
    Electronic Resource
    Electronic Resource
    Weinheim : Wiley-Blackwell
    Liebigs Annalen 1989 (1989), S. 503-513 
    ISSN: 0170-2041
    Keywords: [3.3.3]Propellanecarbonitriles ; Tricyclo[3.3.3.01.5]undecane-3,7-dione ; NBS Bromination ; Chemistry ; Organic Chemistry
    Source: Wiley InterScience Backfile Collection 1832-2000
    Topics: Chemistry and Pharmacology
    Description / Table of Contents: [3.3.3]Propelladienedicarbonitriles1)The 3,7-diketone 5 reacts with 4-chlorothiophenol in the presence of titanium tetrachloride/triethylamine to afford equal amounts of the vinyl sulfides C2/C5-6 in 95% yield. Equilibration of the 1:1 mixture of C2/C5-6 is catalyzed by trifluoroacetic acid and produces a 3:2 ratio of C2/C5-7 in almost quantitative yield. Potassium cyanide supported on aluminium oxide in boiling 2-methyl-2-butanol converts the latter into a mixture of the α,β-unsaturated dinitriles 1b, 11, 13, and 14, which are separated by chromatography. The intermediates 8 and 10 as well as the products 9 and 12 resulting from the addition of hydrogen cyanide to 1b and 11, respectively, are isolated in the same way. The dinitrile 1b is brominated by N-bromosuccinimide to afford a mixture of endo-15, exo-15, endo,endo-16, endo,exo-16, and 17, most of which are separated by chromatography. The endo-bromodinitrile endo-15 reacts with potassium methoxide in methanol to yield the exo-methoxydinitrile 18. The configuration of the dinitriles endo-15, endo,endo-16, and 18 is established by NOE difference spectroscopy and X-ray diffraction analyses.
    Notes: Das 3,7-Diketon 5 reagiert mit 4-Chlorthiophenol in Gegenwart von Titan(IV)-chlorid/Triethylamin zu gleichen Mengen der Bis(vinylsulfide) C2/C5-6 (65% Ausb.), die unter Trifluoressigsäure-Katalyse zu einem (3:2)-Gemisch äquilibriert werden. Oxidation von C2/C5-6 mit Natriumperborat-tetrahydrat in Essigsäure ergibt fast quantitativ die Bis(vinylsulfone) C2/C5-7. Diese liefern mit Kaliumcyanid auf Aluminiumoxid in siedendem 2-Methyl-2-butanol ein Gemisch der α,β-ungesättigten Dinitrile 1b, 11, 13 und 14, die chromatographisch getrennt werden So werden auch die Zwischenstufen 8 und 10 sowie Folgeprodukte von 1b und 11, nämlich die Trinitrile 9 und 12, isoliert. das Dinitril 1b wird mit N-Bromsuccinimed zu einem Gemisch von endo-15, exo-15, endo,endo-16, endo,exo-16 und 17 bromiert, das größtenteils chromatographisch getrennt wird. Das endo-Bromdinitril endo-15 reagiert mit Kaliummethanolat in Methanol zum exo-Methoxydinitril 18. Die Konfiguration der Dinitrile endo-15, endo,endo-16 und 18 wird durch NOE-Differenz-Spektren und Röntgenstrukturanalyse bewiesen.
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  • 5
    ISSN: 0170-2041
    Keywords: Bicyclo[3.3.0]octane, derivatives of ; Pentalene, derivatives of ; 9-Oxatricyclo[3.3.1.02,6]nonane, derivatives of ; Oxanortwistane, derivatives of ; Phenylmetal reagents ; Phenylcuprate reagents ; Phenyllithium-cerium(III) chloride reagent ; 1,2-Addition ; Conjugate addition ; Chemistry ; Organic Chemistry
    Source: Wiley InterScience Backfile Collection 1832-2000
    Topics: Chemistry and Pharmacology
    Notes: Stereochemistry of the Addition of Phenylmetal Reagents to Bicyclo[3.3.0]octanediones and -octadienediones.  -  Synthesis of Phenyl-Substituted Bicyclo[3.3.0]octadienesConjugate addition of dilithium diphenylcyanocuprate is observed only on one side of the dienedione 4b, affording the enedione 5b, but on both sides in the presence of boron trifluoride yielding the diphenyldione 6b. Likewise, the latter reagent gives rise to the formation of 6a from 4a. Phenylcerium(III) dichloride is much superior to phenyllithium and phenylmagnesium bromide in the 1,2 addition reaction to encumbered, enolizeable bicyclo[3.3.0]octanediones. Thus, a mixture of the diols exo,exo-8, exo,endo-8, and endo,endo-8 is formed in almost quantitative yield from the 3,7-dione 7. Furthermore, the diphenyldione 6a is transformed into the tetraphenyldiol 14 in this way and in high yield. The 2,6-dione 11b adds phenylcerium(III) dichloride affording a mixture of the hydroxyketone endo-16, which is inert towards an excess of the reagent, and the diol exo,endo-12b. The inertness of endo-16 is attributed to the formation of the cyclic hemiacetal 20 which eventually is trapped quantitatively by O-silylation with chlorotrimethylsilane in the presence of pyridine. The hydroxyketone endo-16 is dehydrated to give the enone 17 which subsequently is treated with phenylcerium(III) dichloride to form exo- and endo-19. A solution of sulfuric acid in acetic acid dehydrates the tertiary benzyl alcohols 8 (→9 + 10), endo,endo-12a (→ 13a), exo,endo-12b (→ 13b), 14 (→ 15), endo-16 (→ 17), and 19 (→ 13b) in high yields. The same results are achieved even more conveniently with a solution of chlorotrimethylsilane in dichloromethane in the absence of a base. The oxanortwistane 18 is obtained as a byproduct in the dehydration of exo,endo-12b with both reagents. The gross structures of all compounds are based on spectroscopic evidence, in particular NMR spectra. Concentration-independent IR and low-field NMR absorptions of two equivalent hydroxy groups are indicative of intramolecular hydrogen bonds and hence the endo,endo configuration of the diols endo,endo-8, endo,endo-12a, and 14. Eventually, the configurations of 5b, 6b, endo,endo-8, endo,endo-12a, exo,endo-12b, 14, 15, endo-16, and the structure of 18 as well, are established by X-ray diffraction analyses. In the solid state, the bicyclo[3.3.0]-octanols endo,endo-12a, exo,endo-12b, 14, and endo-16 adopt conformations that allow the phenyl groups the occupation of quasi equatorial positions. The optimized procedures described open high-yield routes to phenyl-substituted bicyclo-[3.3.0]octadienes starting from readily available bicyclooctanediones.
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  • 6
    Electronic Resource
    Electronic Resource
    Weinheim : Wiley-Blackwell
    Berichte der deutschen chemischen Gesellschaft 122 (1989), S. 523-531 
    ISSN: 0009-2940
    Keywords: Dicyclopenta-s-indacene ; 2-Osxa[3.3.3]propellane derivatives ; Pentalene derivatives ; [3.3.3]Propellane-3,7-dione ; Weiss reaction ; Chemistry ; Inorganic Chemistry
    Source: Wiley InterScience Backfile Collection 1832-2000
    Topics: Chemistry and Pharmacology
    Description / Table of Contents: Novel Products in the Weiss Reaction of 1,2-Cyclopentanedione. Improved Preparation of [3.3.3]Propellane-3,7-dioneThe reaction of 1,2-cyclopentanedione (1c, 9) with the 3-oxoglutarate 4 in methanol/water in the presence of sodium bicarbonate followed by hydrolysis and decarboxylation of the product mixture affords the oxa[3.3.3]propellane ester 11c in addition to the [3.3.3]propellanedione 6c. The alkali enolates of 4 react with 9 in boiling methanol to yield the yellow, poorly soluble alkali dihydropentalenolates 12M and the [3.3.3]propellane tetraester 5c, which on hydrolysis and decarboxylation yields 53% of 6c. The dihydropentalenol 12H equilibrates with the tautomeric β-oxodiester 13, the proportion of which increases with solvent polarity. In methanol solutions, 12H and 13 add diastereoselectively forming the dicyclopenta-s-indacene tetraester syn-14, which is derived from a novel pentacyclic ring system. The configuration of syn-14 is determined by X-ray diffraction analysis. The mechanisms of formation are discussed for 11c, 12M, and syn-14.
    Notes: Nach Umsetzung von 1,2-Cyclopentandion (1c, 9) mit dem 3-Oxoglutarsäureester 4 in Methanol/Wasser in Gegenwart von Natriumhydrogencarbonat, saurer Hydrolyse und Decarboxylierung des Produktgemischs erhält man neben dem [3.3.3]Propellandion 6c den Oxa[3.3.3]propellanester 11c. Die Alkali-Enolate von 4 reagieren mit 9 in siedendem Methanol zu den gelben, schwer löslichen Dihydropentalenolaten 12M und dem [3.3.3]Propellantetraester 5c, der nach Hydrolyse und Decarboxylierung 53% 6c ergibt. Das Dihydropentalenol 12H liegt im Gleichgewicht mit dem tautomeren β-Oxodiester 13 vor, dessen Anteil mit der Polarität des Lösungsmittels zunimmt. In Methanol addieren sich 12H und 13 diastereoselektiv und bilden den Dicyclopenta-s-indacentetraester syn-14, der sich von einem neuartigen, pentacyclischen Ringsystem ableitet. Die Konfiguration von syn-14 wird durch Röntgenstrukturbestimmung aufgeklärt. Die Mechanismen der Bildung von 11c, 12M und syn-14 werden diskutiert.
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  • 7
    Electronic Resource
    Electronic Resource
    Stamford, Conn. [u.a.] : Wiley-Blackwell
    Polymer Engineering and Science 32 (1992), S. 1516-1522 
    ISSN: 0032-3888
    Keywords: Chemistry ; Chemical Engineering
    Source: Wiley InterScience Backfile Collection 1832-2000
    Topics: Chemistry and Pharmacology , Mechanical Engineering, Materials Science, Production Engineering, Mining and Metallurgy, Traffic Engineering, Precision Mechanics , Physics
    Notes: t-Butyloxycarbonyl (t-BOC) blocked compounds based on the protection of phenolic groups, e.g. poly-4-hydroxystyrene derivatives, Bisphenol A type dissolution inhibitors, or onium salt photoacid generators, have found widespread research interest for photoresist systems with excellent photosensitivity and high resolution power. We have made an extension of this approach using new phenol type polymers. This contribution presents first details on the chemistry of these systems and results of their lithographic evaluation as positive tone photoresists for deep UV applications.
    Additional Material: 11 Ill.
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  • 8
    Electronic Resource
    Electronic Resource
    Weinheim : Wiley-Blackwell
    Berichte der deutschen chemischen Gesellschaft 125 (1992), S. 2591-2611 
    ISSN: 0009-2940
    Keywords: Bicyclo[3.3.0]octane, derivatives of ; Pentalene, derivatives of ; Phenylethynyllithium-cerium trichloride reagent ; 1,2-Addition to carbonyl groups ; Transannular reactions ; Propargyl-allenyl cation ; Vinyl cations, by addition or [2 + 2] cycloaddition to phenylethynyl groups ; Dehydro Diels-Alder reaction, intramolecular ; Chemistry ; Inorganic Chemistry
    Source: Wiley InterScience Backfile Collection 1832-2000
    Topics: Chemistry and Pharmacology
    Notes: Syntheses, Structures, and Reactions of Phenylethynyl-Substituted Bicyclo[3.3.0]octanes[1]The bicyclo[3.3.0]octane-3,7-dione 5 adds phenylethynyl-cerium(III) dichloride to afford an almost quantitative yield of the 3,7-diols exo,exo-, exo,endo-, and endo,endo-6 (1:2:2) which are separated by flash chromatography. While both exo,endo- and endo,endo-6 are dehydrated by sulfuric acid in acetic acid to furnish the isomeric dienes C2- and Cs-7, exo,exo-6 rearranges to a bicyclic ketone (8), two tricyclic ketones (10a, b), and a tetracyclic ketone (12) as a consequence of the proximity of the endo-phenylethynyl groups. The rearrangements of exo,exo-6 are avoided when chlorotrimethylsilane is used as the dehydrating agent. Thus, a 90% yield of C2- and Cs-7 is realized from the mixture of the 3,7-diols 6. - The 2,6-dione 13 reacts with phenylethynylcerium(III) dichloride to yield the hydroxyketone endo-14 and the 2,6-diols exo,endo- and endo,endo-16 (1:1:3) which are separated by cyclic medium-pressure liquid chromatography. Dehydration of endo-14 furnishes the enone 15 which adds phenylethynylcerium(III) dichloride to afford the endo alcohol 17. Eventually, this is dehydrated to the diene 18. Formation of 18 from exo,endo-16, and endo,endo-16 as well, is accompanied by dehydrating cyclization to the oxanortwistane 19 (20%) readily separated from 18 by chromatography. - The encumbered diphenyldione 20 is converted into the highly substituted bicyclo[3.3.0]octa-2,6-diene 24 in 68% overall yield in a four-step sequence involving additions of phenylethinyl-cerium(III) dichloride (20→21 and 22→23) followed by dehydration of the endo alcohols 21 (→22) and 23 (→24). - In contrast to 20, the dicyanodiketone 25 adds phenylethynylcerium(III) dichloride at both carbonyl groups and, surprisingly, from the endo face, thus affording the exo,exo-diol 26. At 150°C, 26 undergoes quantitatively an intramolecular dehydro Diels-Alder reaction to yield the 1-phenylnaphthalene derivative. 30. The lack of incorporation of deuterium from deuterated solvents attests to the intramolecular nature of the 1,5-hydrogen shift converting the intermediate six-membered cyclic cumulene 29 to the final product 30. - Dehydration of 26 produces the highly substituted bicyclo[3.3.0]octadiene-2,6-dicarbonitrile 27 which rearranges into an equilibrium mixture of the diastereomeric bisallenes exo,exo-, exo,endo-, and endo,endo-28 on treatment with a strong base. In the same way, the identical mixture of diastereomers is obtained from each of the bisallenes 28 which had been separated by preparative medium-pressure liquid chromatography. - The gross structures of all new compounds are based on spectroscopic evidence including IR, NMR, and mass spectra. The structures of endo,endo-6, 12, exo-14, endo,endo-16 (α- and β-form), 19, 24, 26 · 2 Me2SO, 27, exo,exo-28, and endo,endo-28 are established by X-ray diffraction analyses. The preferred conformations of exo-14, endo,endo-16 (α- and β-form), and 26 · 2 Me2SO in the crystalline state, as well as the stereochemistry of the nucleophilic attack to bicyclo[3.3.0]octanediones, and the mechanisms of the intramolecular reactions between the phenylethynyl groups are discussed.
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