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闪速化学:利用微反应器进行快速化学合成。

Flash chemistry: fast chemical synthesis by using microreactors.

作者信息

Yoshida Jun-ichi, Nagaki Aiichiro, Yamada Takeshi

机构信息

Department of Synthetic Chemistry and Biological Chemistry, Graduate School of Engineering, Kyoto University, Kyoto, Japan.

出版信息

Chemistry. 2008;14(25):7450-9. doi: 10.1002/chem.200800582.

Abstract

This concept article provides a brief outline of the concept of flash chemistry for carrying out extremely fast reactions in organic synthesis by using microreactors. Generation of highly reactive species is one of the key elements of flash chemistry. Another important element of flash chemistry is the control of extremely fast reactions to obtain the desired products selectively. Fast reactions are usually highly exothermic, and heat removal is an important factor in controlling such reactions. Heat transfer occurs very rapidly in microreactors by virtue of a large surface area per unit volume, making precise temperature control possible. Fast reactions often involve highly unstable intermediates, which decompose very quickly, making reaction control difficult. The residence time can be greatly reduced in microreactors, and this feature is quite effective in controlling such reactions. For extremely fast reactions, kinetics often cannot be used because of the lack of homogeneity of the reaction environment when they are conducted in conventional reactors such as flasks. Fast mixing using micromixers solves such problems. The concept of flash chemistry has been successfully applied to various organic reactions including a) highly exothermic reactions that are difficult to control in conventional reactors, b) reactions in which a reactive intermediate easily decomposes in conventional reactors, c) reactions in which undesired byproducts are produced in the subsequent reactions in conventional reactors, and d) reactions whose products easily decompose in conventional reactors. The concept of flash chemistry can be also applied to polymer synthesis. Cationic polymerization can be conducted with an excellent level of molecular-weight control and molecular-weight distribution control.

摘要

这篇概念文章简要概述了闪速化学的概念,即利用微反应器在有机合成中进行极快速反应。生成高活性物种是闪速化学的关键要素之一。闪速化学的另一个重要要素是控制极快速反应以选择性地获得所需产物。快速反应通常是高度放热的,而热量移除是控制此类反应的一个重要因素。由于微反应器单位体积具有较大的表面积,传热在其中非常迅速,从而使得精确的温度控制成为可能。快速反应常常涉及高度不稳定的中间体,这些中间体分解非常迅速,使得反应控制变得困难。在微反应器中停留时间可以大大缩短,这一特性在控制此类反应方面非常有效。对于极快速反应,由于在诸如烧瓶等传统反应器中进行反应时反应环境缺乏均一性,动力学常常无法适用。使用微混合器进行快速混合解决了此类问题。闪速化学的概念已成功应用于各种有机反应,包括:a)在传统反应器中难以控制的高度放热反应;b)反应中间体在传统反应器中容易分解的反应;c)在传统反应器后续反应中会产生不需要的副产物的反应;d)产物在传统反应器中容易分解的反应。闪速化学的概念也可应用于聚合物合成。阳离子聚合可以在优异的分子量控制和分子量分布控制水平下进行。

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