147298-18-8Relevant academic research and scientific papers
Reactivity of conformationally constrained bispropargyl sulfones: Complete preference for 6π-electrocyclization process
Ghosh, Debaki,Jana, Saibal,Panja, Arpita,Anoop, Anakuthil,Basak, Amit
, p. 8724 - 8730 (2013)
The reactivity of a series of conformationally constrained bispropargyl sulfones with an ortho alkenyl moiety was studied. Under basic condition, these molecules underwent isomerization, first to monoallene followed by 6π-electrocyclization (6π-EC). Another cycle of isomerization and 6π-EC gave the bis naphthyl sulfones. No Garratt-Braverman (GB) Cyclization product could be isolated even on easing up the strain. Computations with DFT (at BP86-D3/def2-SVP level) indicated that, it is energetically more favorable for the initially formed monoallenic intermediate to undergo electrocyclization rather than isomerize to bisallene. This is in contrast to the acyclic unconstrained counterpart, where isomerization to bisallene is preferred and competing GBC/6π-EC of bisallenes results in mixture of products.
RESPIRATORY SYNCYTIAL VIRUS INHIBITORS
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Page/Page column 35, (2017/02/24)
Compounds of Formula (I): (Formula I), wherein Z1 is NR1A, CHR1A or CR1BR1B; one of Z2 and Z3 is CH or CR1A', the other is N, CH or CR1A'; n is 0, 1 or 2; q is 0, 1 or 2; R1A, R1A', R1B, R2 and R3 are as defined herein, their use as inhibitors of RSV and related aspects.
Versatile synthesis of isoquinolines and isochromenes by Pd-catalyzed oxidative carbonylation of (2-alkynyl)benzylideneamine derivatives
Gabriele, Bartolo,Veltri, Lucia,Maltese, Vito,Spina, Rosella,Mancuso, Raffaella,Salerno, Giuseppe
experimental part, p. 5626 - 5635 (2011/11/29)
Isoquinoline-4-carboxylic esters 3 and isochromene-4-carboxylic esters 4 have been conveniently prepared by direct PdI2-catalyzed oxidative heterocyclization/alkoxycarbonylation of readily available (2- alkynylbenzylidene)amine derivatives. In particular, (2-alkynylbenzylidene) (tert-butyl)amines 2 selectively afforded isoquinoline derivatives 3 by N-cyclization, whereas N-(2-alkynylbenzylidene)-N′-phenylhydrazines 5 led to the formation of isochromenes 4 through O-cyclization ensuing from water attack on the imino group of the substrate. Reactions were carried out in alcoholic solvents at 80-100 °C and under 20-80 atm (at 25 °C) of a 4:1 mixture of CO/air, in the presence of PdI2 (2-10 mol-%) in conjunction with KI (KI/PdI2 molar ratio = 10). In the case of imines 2, the use of a dehydration agent, such as trialkyl orthoformate, was necessary to obtain satisfactory yields of isoquinolines 3.
Rearrangement of alkynyl and vinyl carbenoids via the rhodium(II)-catalyzed cyclization reaction of α-diazo ketones
Padwa, Albert,Austin, David J.,Gareau, Yves,Kassir, Jamal M.,Xu, Simon L.
, p. 2637 - 2647 (2007/10/02)
o-Alkynyl-substituted α-diazoacetophenones undergo facile cyclization to indenone derivatives upon treatment with catalytic quantities of Rh(II) carboxylates. The cyclization reaction involves addition of a rhodium stabilized α-keto carbenoid onto the neighboring acetylenic π-bond to give a cyclized vinyl carbenoid. When an alkene is tethered to the alkynyl group, the vinyl carbenoid complex undergoes further cyclization to produce a cyclopropenyl-substituted indenone. Different enyl substituents resulted in a significant variation in the behavioral pattern of the reactive cyclopropene ring. The strained cyclopropene ring was intercepted with diphenylisobenzofuran to give Diels-Alder cycloadducts. For alkynyl substituted π-diazo ketones, the resulting vinyl alkynyl carbenoids were found to give products derived from an unusual alkynyl carbenoid rearrangement. The Rh(II)-catalyzed reaction of several o-dialkynyl-substituted α-diazoacetophenones which contain a group capable of undergoing reaction with the carbenoid at the terminal position was examined. Products derived from a 1,2-hydrogen shift as well as cyclopropanation of a tethered alkene was obtained in high yield. In addition, the thermal decomposition of a series of aziridinylimines derived from alkynyl-substituted aldehydes led to products derived from a rearranged alkynyl carbene. The initially formed alkynyl carbene at C1 could be induced to undergo exclusive reaction at the C3 terminal position.
