Academic literature on the topic 'Menshutkin reaction'

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Journal articles on the topic "Menshutkin reaction"

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Alkorta, Ibon, and José Elguero. "The SN2 reaction and its relationship with the Walden inversion, the Finkelstein and Menshutkin reactions together with theoretical calculations for the Finkelstein reaction." Structural Chemistry 32, no. 5 (2021): 1755–61. http://dx.doi.org/10.1007/s11224-021-01805-y.

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AbstractThis communication gives an overview of the relationships between four reactions that although related were not always perceived as such: SN2, Walden, Finkelstein, and Menshutkin. Binary interactions (SN2 & Walden, SN2 & Menshutkin, SN2 & Finkelstein, Walden & Menshutkin, Walden & Finkelstein, Menshutkin & Finkelstein) were reported. Carbon, silicon, nitrogen, and phosphorus as central atoms and fluorides, chlorides, bromides, and iodides as lateral atoms were considered. Theoretical calculations provide Gibbs free energies that were analyzed with linear models
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Turan, Haydar Taylan, Sebastian Brickel, and Markus Meuwly. "Solvent Effects on the Menshutkin Reaction." Journal of Physical Chemistry B 126, no. 9 (2022): 1951–61. http://dx.doi.org/10.1021/acs.jpcb.1c09710.

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Castejon, Henry, and Kenneth B. Wiberg. "Solvent Effects on Methyl Transfer Reactions. 1. The Menshutkin Reaction." Journal of the American Chemical Society 121, no. 10 (1999): 2139–46. http://dx.doi.org/10.1021/ja983736t.

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Das, Gobinda, Tina Skorjanc, Thirumurugan Prakasam, Selbi Nuryyeva, John-Carl Olsen, and Ali Trabolsi. "Microwave-assisted synthesis of a viologen-based covalent organic polymer with redox-tunable polarity for dye adsorption." RSC Advances 7, no. 6 (2017): 3594–98. http://dx.doi.org/10.1039/c6ra26332a.

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Ohligschläger, A., and M. A. Liauw. "Intricate kinetics: in situ FTIR-spectroscopy discloses a phase change during ionic liquid synthesis." Physical Chemistry Chemical Physics 19, no. 27 (2017): 18018–22. http://dx.doi.org/10.1039/c7cp03257a.

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Sola, Miquel, Agusti Lledos, Miquel Duran, Juan Bertran, and Jose Luis M. Abboud. "Analysis of solvent effects on the Menshutkin reaction." Journal of the American Chemical Society 113, no. 8 (1991): 2873–79. http://dx.doi.org/10.1021/ja00008a013.

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Halls, Mathew D., and H. Bernhard Schlegel. "Chemistry Inside Carbon Nanotubes: the Menshutkin SN2 Reaction." Journal of Physical Chemistry B 106, no. 8 (2002): 1921–25. http://dx.doi.org/10.1021/jp0137165.

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Kanemaru, K., Y. Watanabe, N. Yoshida, and H. Nakano. "Application of the reference interaction site model self-consistent field method based on the Dirac-Hartree–Fock wave function to a chemical reaction." IOP Conference Series: Materials Science and Engineering 1280, no. 1 (2023): 012002. http://dx.doi.org/10.1088/1757-899x/1280/1/012002.

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Abstract The reference interaction site model self-consistent field (RISM-SCF) method is a combined method of the electronic structure theory of molecules and the integral equation theory of molecular liquids. The RISM-SCF method based on the Dirac-Hartree-Fock wave function, recently proposed, is applied to a chemical reaction, specifically, a Menshutkin reaction in aqueous solution. The Helmholtz energy profile along the reaction coordinate is calculated and the characteristics of the reaction are discussed based on energy component analysis.
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Jung, Jiyoon, Young Sang Park, Gwan Hyun Choi, et al. "Alkaline-Stable, In Situ Menshutkin Coat and Curable Ammonium Network: Ion-Solvating Membranes for Anion Exchange Membrane Water Electrolyzers." International Journal of Energy Research 2023 (September 30, 2023): 1–12. http://dx.doi.org/10.1155/2023/7416537.

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Anion exchange membranes fabricated through a one-step Menshutkin reaction with down-selected multifunctional alkyl halides and multifunctional tertiary amines within an ion-solvating matrix, poly(ethylene-co-vinyl alcohol), yielded alkaline-stable ammonium network polymers. Due to the vast simplicity in fabrication due to the quaternization/Menshutkin reaction between tertiary amine and alkyl bromides, which does not evolve any by-products that require purification, alkaline-stable membranes were fabricated in one step through facile mixing and curing of alkaline-stable ammonium network formi
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Hou, Shengtai, Minshan Meng, Dandan Liu, and Pengfei Zhang. "Mechanochemical Process to Construct Porous Ionic Polymers by Menshutkin Reaction." ChemSusChem 14, no. 15 (2021): 3059–63. http://dx.doi.org/10.1002/cssc.202101093.

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Dissertations / Theses on the topic "Menshutkin reaction"

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Pfrunder, Michael Craig. "Halogen bond mediated crystal engineering of metal complexes." Thesis, Queensland University of Technology, 2014. https://eprints.qut.edu.au/71083/1/Michael_Pfrunder_Thesis.pdf.

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This project explored the potential for halogen bonds to predictably organise metal-containing molecular building blocks in crystalline materials. A novel method for the halogen bond mediated crystal engineering of metal complexes was discovered, which led to the preparation of new materials with potential applications in molecular switching devices and advanced memory storage systems.
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Lee, Jung-Jae. "Supramolecular enhancement of the Menshutkin reaction." 2009. http://etd.nd.edu/ETD-db/theses/available/etd-02242009-101852/.

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Thesis (Ph. D.)--University of Notre Dame, 2009.<br>Thesis directed by Bradley D. Smith for the Department of Chemistry and Biochemistry. "February 2009." Includes bibliographical references (leaves 157-168).
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Book chapters on the topic "Menshutkin reaction"

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Abboud, Josél-uis M., Rafael Notario, Juan Bertrán, and Miquel Solà. "One Century of Physical Organic Chemistry: The Menshutkin Reaction." In Progress in Physical Organic Chemistry. John Wiley & Sons, Inc., 2007. http://dx.doi.org/10.1002/9780470171981.ch1.

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