化学
放热反应
混合(物理)
产量(工程)
流动化学
流量(数学)
微型反应器
传质
选择性
工艺工程
体积热力学
吞吐量
纳米技术
有机化学
机械
热力学
催化作用
色谱法
计算机科学
材料科学
无线
工程类
物理
电信
量子力学
作者
Peter Morse,Rachel L. Beingessner,Timothy F. Jamison
标识
DOI:10.1002/ijch.201600095
摘要
Abstract Continuous flow reactors are enabling tools that can significantly benefit chemical reactions, especially those that are path length dependent (e.g., photochemical), mixing or transport dependent (e.g., gas‐liquid), exothermic, or utilize hazardous or unstable intermediates. In this review, it is demonstrated how the nearly instantaneous mixing, exceptionally fast mass transfer, safe access to high temperatures and pressures, and high surface area to volume ratio can be leveraged to improve product yield, reaction rates and/or selectivity. By showcasing five synthetic methodologies examined by our group, it is hoped that the reader will gain an appreciation of the accessible and transformative nature of flow chemistry for improving existing transformations, enabling rapid optimization, and for developing new methodologies that depend on precise parameter controls.
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