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Synthetic Communications
An International Journal for Rapid Communication of Synthetic Organic Chemistry
Volume 17, 1987 - Issue 2
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Original Articles

Nickel-Mediated Cycloaddition of Diynes with Carbon Dioxide to Bicyclic α-Pyrones

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Pages 147-154 | Published online: 05 Dec 2006

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Navjeet Kaur. (2019) Nickel catalysis: six membered heterocycle syntheses. Synthetic Communications 49:9, pages 1103-1133.
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Tetsuaki Fujihara. 2022. The Chemical Transformations of C1 Compounds. The Chemical Transformations of C1 Compounds 909 971 .
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Andrew L. Clevenger, Ryan M. Stolley, Justis Aderibigbe & Janis Louie. (2020) Trends in the Usage of Bidentate Phosphines as Ligands in Nickel Catalysis. Chemical Reviews 120:13, pages 6124-6196.
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Peter M. Jurd, Hsiu L. Li, Mohan Bhadbhade, Scott J. Dalgarno, Ruaraidh D. McIntosh & Leslie D. Field. (2020) The Reaction of Iron Acetylides with Carbon Dioxide. Organometallics 39:9, pages 1580-1589.
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Ryohei Doi & Yoshihiro Sato. 2020. Nickel Catalysis in Organic Synthesis. Nickel Catalysis in Organic Synthesis 249 283 .
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Andreu Tortajada, Francisco Juliá‐Hernández, Marino Börjesson, Toni Moragas & Ruben Martin. (2018) Übergangsmetallkatalysierte Carboxylierungen mit Kohlendioxid. Angewandte Chemie 130:49, pages 16178-16214.
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Ruming Yuan, Baohuan Wei & Gang Fu. (2017) How the Coordinated Structures of Ag(I) Catalysts Affect the Outcomes of Carbon Dioxide Incorporation into Propargylic Amine: A DFT Study. The Journal of Organic Chemistry 82:7, pages 3639-3647.
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Nathan A. Spahn, Minh H. Nguyen, Jonas Renner, Timothy K. Lane & Janis Louie. (2016) Regioselective Iron-Catalyzed [2 + 2 + 2] Cycloaddition Reaction Forming 4,6-Disubstituted 2-Aminopyridines from Terminal Alkynes and Cyanamides. The Journal of Organic Chemistry 82:1, pages 234-242.
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Hiroki Sato, Matthias Bender, Weijie Chen & Michael J. Krische. (2016) Diols, α-Ketols, and Diones as 2 2π Components in [2+2+2] Cycloadditions of 1,6-Diynes via Ruthenium(0)-Catalyzed Transfer Hydrogenation . Journal of the American Chemical Society 138:50, pages 16244-16247.
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Alexander Otto, Thomas Grube, Sebastian Schiebahn & Detlef Stolten. (2015) Closing the loop: captured CO 2 as a feedstock in the chemical industry . Energy & Environmental Science 8:11, pages 3283-3297.
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Ruming Yuan & Zhenyang Lin. (2014) Computational Insight into the Mechanism of Nickel-Catalyzed Reductive Carboxylation of Styrenes using CO 2 . Organometallics 33:24, pages 7147-7156.
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Masahiro Ishii, Fumiya Mori & Ken Tanaka. (2014) Rhodium‐Catalyzed [2+2+2] Cycloaddition of Diynes with Carbodiimides and Carbon Dioxide under Ambient Conditions. Chemistry – A European Journal 20:8, pages 2169-2174.
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Masanori Takimoto. (2013) Transition Metal-Catalyzed Carboxylation of Unsaturated Organic Compounds under an Atmosphere of CO2. Journal of Synthetic Organic Chemistry, Japan 71:10, pages 1020-1032.
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An-Hua Liu, Jian Gao & Liang-Nian He. 2013. New and Future Developments in Catalysis. New and Future Developments in Catalysis 81 147 .
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Mirza Cokoja, Christian Bruckmeier, Bernhard Rieger, Wolfgang A. Herrmann & Fritz E. Kühn. (2011) Transformation of Carbon Dioxide with Homogeneous Transition‐Metal Catalysts: A Molecular Solution to a Global Challenge?. Angewandte Chemie International Edition 50:37, pages 8510-8537.
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Mirza Cokoja, Christian Bruckmeier, Bernhard Rieger, Wolfgang A. Herrmann & Fritz E. Kühn. (2011) Umwandlung von Kohlendioxid mit Übergangsmetall‐Homogenkatalysatoren: eine molekulare Lösung für ein globales Problem?. Angewandte Chemie 123:37, pages 8662-8690.
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