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      Mixed Aggregates of 1-Methoxyallenyllithium with Lithium Chloride

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          Abstract

          A combined computational and 13C NMR study was used to investigate the formation of mixed aggregates of 1-methoxyallenyllithium and lithium chloride in tetrahydrofuran (THF) solution. The observed and calculated chemical shifts, as well as the calculated free energies of mixed aggregate formation (MP2/6-31+G(d)), are consistent with the formation of a mixed dimer as the major species in solution. Free energies of mixed dimer, trimer, and tetramer formation were calculated by using the B3LYP and MP2 methods and the 6-31+G(d) basis set. The two methods generated different predictions of which mixed aggregates will be formed, with B3LYP/6-31+G(d) favoring mixed trimers and tetramers in THF solution, and MP2/6-31+G(d) favoring mixed dimers. Formation of the sterically unhindered mixed dimers is also consistent with the enhanced reactivity of these compounds in the presence of lithium chloride. The spectra are also consistent with some residual 1-methoxyallenyllithium tetramer, as well as small amounts of higher mixed aggregates. Although neither computational method is perfect, for this particular system, the calculated free energies derived using the MP2 method are in better agreement with experimental data than those derived using the B3LYP method.

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          Organoselenium chemistry. Conversion of ketones to enones by selenoxide syn elimination

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            Traceless chiral auxiliaries for the allene ether Nazarov cyclization.

            The key stereochemical factors that determine transfer of asymmetry from the chiral auxiliary to the cyclopentenone in the allene ether version of the Nazarov reaction have been elucidated. On the basis of the new insights into the mechanism, two highly effective chiral auxiliaries were designed and prepared.
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              Scope of a novel three-component synthesis of highly functionalized pyridines(dagger).

              A mechanistically unique three-component synthesis provides a variety of functionalized pyridine derivatives in fair to excellent yields. The scope of this reaction was studied with respect to the alkoxyallene, the nitrile, and the carboxylic acid. Due to the 4-hydroxy group, these pyridine derivatives are suitable precursors for subsequent palladium-catalyzed reactions. Suzuki couplings of the corresponding pyridyl nonaflates lead to a variety of pyridine and bipyridine derivatives.
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                Author and article information

                Journal
                ChemistryOpen
                ChemistryOpen
                open
                ChemistryOpen
                Blackwell Publishing Ltd (Oxford, UK )
                2191-1363
                2191-1363
                December 2014
                19 November 2014
                : 3
                : 6
                : 250-255
                Affiliations
                [[a] ]Department of Physical, Environmental, and Computer Science, Medgar Evers College, The City University of New York 1638 Bedford Ave., Brooklyn, NY 11225 (USA) E-mail: lpratt@ 123456mec.cuny.edu
                [[b] ]Department of Chemistry, University of Hawaii at Manoa 2545 McCarthy Mall, Honolulu, HI 96813 (USA)The University of Hawaii Cancer Center 701 Ilalo Street, Honolulu, HI 96813 (USA) E-mail: tius@ 123456hawaii.edu
                Author notes
                [+]

                Current address: Peloton Therapeutics, Inc., Dallas, TX 75235 (USA)

                Supporting information for this article is available on the WWW under http://dx.doi.org/10.1002/open.201402025.

                Article
                10.1002/open.201402025
                4280824
                420ceedf-d518-4781-9af7-befd30b594dc
                © 2014 The Authors. Published by Wiley-VCH Verlag GmbH & Co. KGaA.

                This is an open access article under the terms of the Creative Commons Attribution-NonCommercial License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited and is not used for commercial purposes.

                History
                : 29 July 2014
                : 09 September 2014
                Categories
                Full Papers

                aggregation,computational chemistry,mixed aggregates,nmr,organolithium compounds

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