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      Optimization of Nazarov Cyclization of 2,4-Dimethyl-1,5-diphenylpenta-1,4-dien-3-one in Deep Eutectic Solvents by a Design of Experiments Approach

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          Abstract

          The unprecedented Nazarov cyclization of a model divinyl ketone using phosphonium-based Deep Eutectic Solvents as sustainable non-innocent reaction media is described. A two-level full factorial Design of Experiments was conducted for elucidating the effect of the components of the eutectic mixture and optimizing the reaction conditions in terms of temperature, time, and substrate concentration. In the presence of the Deep Eutectic Solvent (DES) triphenylmethylphosphonium bromide/ethylene glycol, it was possible to convert more than 80% of the 2,4-dimethyl-1,5-diphenylpenta-1,4-dien-3-one, with a specific conversion, into the cyclopentenone Nazarov derivative of 62% (16 h, 60 °C). For the reactions conducted in the DES triphenylmethylphosphonium bromide/acetic acid, quantitative conversions were obtained with percentages of the Nazarov product above 95% even at 25 °C. Surface Responding Analysis of the optimized data furnished a useful tool to determine the best operating conditions leading to quantitative conversion of the starting material, with complete suppression of undesired side-reactions, high yields and selectivity. After optimization, it was possible to convert more than 90% of the model substrate into the desired cyclopentenone with cis percentages up to 77%. Experimental validation of the implemented model confirmed the robustness and the suitability of the procedure, leading to possible further extension to this specific combination of experimental designs to other substrates or even to other synthetic processes of industrial interest.

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          Deep eutectic solvents (DESs) and their applications.

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            Novel solvent properties of choline chloride/urea mixturesElectronic supplementary information (ESI) available: spectroscopic data. See http://www.rsc.org/suppdata/cc/b2/b210714g/

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              Deep eutectic solvents: syntheses, properties and applications.

              Within the framework of green chemistry, solvents occupy a strategic place. To be qualified as a green medium, these solvents have to meet different criteria such as availability, non-toxicity, biodegradability, recyclability, flammability, and low price among others. Up to now, the number of available green solvents are rather limited. Here we wish to discuss a new family of ionic fluids, so-called Deep Eutectic Solvents (DES), that are now rapidly emerging in the current literature. A DES is a fluid generally composed of two or three cheap and safe components that are capable of self-association, often through hydrogen bond interactions, to form a eutectic mixture with a melting point lower than that of each individual component. DESs are generally liquid at temperatures lower than 100 °C. These DESs exhibit similar physico-chemical properties to the traditionally used ionic liquids, while being much cheaper and environmentally friendlier. Owing to these remarkable advantages, DESs are now of growing interest in many fields of research. In this review, we report the major contributions of DESs in catalysis, organic synthesis, dissolution and extraction processes, electrochemistry and material chemistry. All works discussed in this review aim at demonstrating that DESs not only allow the design of eco-efficient processes but also open a straightforward access to new chemicals and materials.
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                Author and article information

                Journal
                Molecules
                Molecules
                molecules
                Molecules
                MDPI
                1420-3049
                04 December 2020
                December 2020
                : 25
                : 23
                : 5726
                Affiliations
                [1 ]Department of Chemistry, University of Turin, Via Pietro Giuria, 7-I-10125 Torino, Italy; stefano.nejrotti@ 123456unito.it (S.N.); salvatore.baldino@ 123456unito.it (S.B.); cristina.prandi@ 123456unito.it (C.P.)
                [2 ]Department of Drug Science and Technology, University of Turin, Via Pietro Giuria, 9-I-10125 Torino, Italy; andrea.fin@ 123456unito.it
                Author notes
                [* ]Correspondence: alberto.mannu@ 123456unito.it (A.M.); marco.blangetti@ 123456unito.it (M.B.); Tel.: +39-011-6708033 (M.B.)
                Author information
                https://orcid.org/0000-0002-6017-5705
                https://orcid.org/0000-0001-7623-7475
                https://orcid.org/0000-0001-6553-8846
                https://orcid.org/0000-0002-0327-0175
                https://orcid.org/0000-0002-7567-4646
                https://orcid.org/0000-0001-9510-8783
                Article
                molecules-25-05726
                10.3390/molecules25235726
                7730498
                33291596
                6901ac30-c515-4b57-9ef5-e182776a165d
                © 2020 by the authors.

                Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license ( http://creativecommons.org/licenses/by/4.0/).

                History
                : 21 November 2020
                : 03 December 2020
                Categories
                Article

                nazarov reaction,design of experiments,deep eutectic solvents,surface responding analysis,box-behnken design

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