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      Continuous process technology: a tool for sustainable production

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      Green Chem.
      Royal Society of Chemistry (RSC)

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          Novel process windows for enabling, accelerating, and uplifting flow chemistry.

          Novel Process Windows make use of process conditions that are far from conventional practices. This involves the use of high temperatures, high pressures, high concentrations (solvent-free), new chemical transformations, explosive conditions, and process simplification and integration to boost synthetic chemistry on both the laboratory and production scale. Such harsh reaction conditions can be safely reached in microstructured reactors due to their excellent transport intensification properties. This Review discusses the different routes towards Novel Process Windows and provides several examples for each route grouped into different classes of chemical and process-design intensification. Copyright © 2013 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim.
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            Continuous flow reactors: a perspective

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              Applying flow chemistry: methods, materials, and multistep synthesis.

              The synthesis of complex molecules requires control over both chemical reactivity and reaction conditions. While reactivity drives the majority of chemical discovery, advances in reaction condition control have accelerated method development/discovery. Recent tools include automated synthesizers and flow reactors. In this Synopsis, we describe how flow reactors have enabled chemical advances in our groups in the areas of single-stage reactions, materials synthesis, and multistep reactions. In each section, we detail the lessons learned and propose future directions.
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                Author and article information

                Journal
                GRCHFJ
                Green Chem.
                Green Chem.
                Royal Society of Chemistry (RSC)
                1463-9262
                1463-9270
                2014
                2014
                : 16
                : 1
                : 55-62
                Article
                10.1039/C3GC41797B
                d112e85f-0191-423b-8b6c-9d36b18b548e
                © 2014
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