Abstract
Over the past decade, a great effort has been made by the chemical community to improve the efficiency of organic transformations and allow sustainable processes. Merging the use of supported and recyclable organocatalysts and aqueous conditions for the asymmetric synthesis of valuable molecules, has led to outstanding contributions in the area of green chemistry. Recent progresses in the field include the implementation of these methodologies in the large scale production of chiral molecules using automated flow chemistry.
Keywords: Aqueous, dendrimers, enantioselective, flow chemistry, immobilization, ionic liquids, organocatalysis, polymers.
Current Organocatalysis
Title:Pursuing Chemical Efficiency by Using Supported Organocatalysts for Asymmetric Reactions under Aqueous Conditions
Volume: 2 Issue: 2
Author(s): Gabriela Guillena, Diego Alonso, Alejandro Baeza, Rafael Chinchilla, Jesus Flores-Ferrandiz, Melania Gomez-Martinez and Paz Trillo
Affiliation:
Keywords: Aqueous, dendrimers, enantioselective, flow chemistry, immobilization, ionic liquids, organocatalysis, polymers.
Abstract: Over the past decade, a great effort has been made by the chemical community to improve the efficiency of organic transformations and allow sustainable processes. Merging the use of supported and recyclable organocatalysts and aqueous conditions for the asymmetric synthesis of valuable molecules, has led to outstanding contributions in the area of green chemistry. Recent progresses in the field include the implementation of these methodologies in the large scale production of chiral molecules using automated flow chemistry.
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Cite this article as:
Guillena Gabriela, Alonso Diego, Baeza Alejandro, Chinchilla Rafael, Flores-Ferrandiz Jesus, Gomez-Martinez Melania and Trillo Paz, Pursuing Chemical Efficiency by Using Supported Organocatalysts for Asymmetric Reactions under Aqueous Conditions, Current Organocatalysis 2015; 2 (2) . https://dx.doi.org/10.2174/2213337202666150428233534
DOI https://dx.doi.org/10.2174/2213337202666150428233534 |
Print ISSN 2213-3372 |
Publisher Name Bentham Science Publisher |
Online ISSN 2213-3380 |
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