Continuous Flow Chemistry with Solids: A Review

IF 3.1 3区 化学 Q2 CHEMISTRY, APPLIED
Hannah L. D. Hayes*,  and , Carl J. Mallia, 
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引用次数: 0

Abstract

The effective handling of solids in a continuous flow process is one of the biggest perceived challenges remaining for modern flow chemistry. This Review aims to consider some of the continuous processes for chemistries involving solids which have been successfully implemented. Learnings from the design of these systems, and identification of the common blockers, will guide a generalized, strategic approach to drive the efficiency of future batch-to-flow development for challenging, heterogeneous systems. Assorted techniques for managing solids in continuous-flow synthesis will be presented herein through a series of case studies, and broken down into several key categories; solubility considerations, setup components and modularity, applications of ultrasonication, reactor type and continuous Grignard reactions.

Abstract Image

Abstract Image

固体连续流化学:回顾
在连续流动过程中有效处理固体是现代流动化学面临的最大挑战之一。本综述旨在探讨一些已经成功实施的涉及固体的连续化学工艺。从这些系统的设计中汲取的经验,以及对常见阻碍因素的识别,将指导我们采用一种通用的战略方法,以提高未来针对具有挑战性的异构系统从批次到流程开发的效率。本文将通过一系列案例研究介绍在连续流合成中管理固体的各种技术,并将其分为几个关键类别:溶解度考虑因素、设置组件和模块化、超声应用、反应器类型和连续格氏反应。
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来源期刊
CiteScore
6.90
自引率
14.70%
发文量
251
审稿时长
2 months
期刊介绍: The journal Organic Process Research & Development serves as a communication tool between industrial chemists and chemists working in universities and research institutes. As such, it reports original work from the broad field of industrial process chemistry but also presents academic results that are relevant, or potentially relevant, to industrial applications. Process chemistry is the science that enables the safe, environmentally benign and ultimately economical manufacturing of organic compounds that are required in larger amounts to help address the needs of society. Consequently, the Journal encompasses every aspect of organic chemistry, including all aspects of catalysis, synthetic methodology development and synthetic strategy exploration, but also includes aspects from analytical and solid-state chemistry and chemical engineering, such as work-up tools,process safety, or flow-chemistry. The goal of development and optimization of chemical reactions and processes is their transfer to a larger scale; original work describing such studies and the actual implementation on scale is highly relevant to the journal. However, studies on new developments from either industry, research institutes or academia that have not yet been demonstrated on scale, but where an industrial utility can be expected and where the study has addressed important prerequisites for a scale-up and has given confidence into the reliability and practicality of the chemistry, also serve the mission of OPR&D as a communication tool between the different contributors to the field.
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