Department of Chemistry and Biomolecular Science and Centre for Catalysis Research and Innovation, University of Ottawa, Ottawa, Ontario K1N 6N5, Canada.
Chem Rev. 2020 Sep 9;120(17):9164-9303. doi: 10.1021/acs.chemrev.9b00719. Epub 2020 Aug 18.
This Review chronicles the progress made in the field of small fluorocarbon synthesis since their invention in the early 1930s by Thomas Midgley, Jr., and his coworkers, with special focus on their application as refrigerants, foam expansion agents, aerosol propellants, and precision solvents. Divided into four generations of C-C halocarbons from CFCs through HCFCs, HFCs, and HFOs, the merits and challenges of each will be discussed in the context of market demands, as well as the evolution of industrial manufacturing methods. Vital transformations, such as exchange (Swarts) fluorination, hydrodehalogenation, dehydrohalogenation, and additions (Kharasch or Prins) will feature prominently and will be discussed in detail, as well as catalysts therefor. Of the myriad of fluorocarbons described herein, the models which have reached particular commercial significance (such as chlorodifluoromethane and 1,1,1,2-tetrafluoroethane) are given special consideration as flag-bearers for the generation to which they belong. Regulatory constraints to which this industry is bound will be outlined in brief, as well as an introduction to safety designations and nomenclature put forth by the American Society for Heating, Refrigerating, and Air-Conditioning Engineers (ASHRAE). This Review includes predominantly works which can only be found in the patent literature, but should be of equal interest to both academic and industrial practitioners of the art as it centers on fundamentals of organofluorine chemistry, which could equally be applied to the synthesis of larger molecules and building blocks for other applications.
这篇综述追溯了自 20 世纪 30 年代小氟碳化合物发明以来在该领域取得的进展,重点介绍了它们作为制冷剂、泡沫膨胀剂、气溶胶推进剂和精密溶剂的应用。根据市场需求以及工业制造方法的演变,将 C-C 卤代烃分为四代,从 CFC 到 HCFC、HFC 和 HFO。将讨论每一代的优点和挑战,以及交换(Swarts)氟化、氢卤化还原、脱氢卤化和加成(Kharasch 或 Prins)等重要转化。在本文描述的无数氟碳化合物中,特别考虑了那些达到特殊商业意义的模型(如二氟一氯甲烷和 1,1,1,2-四氟乙烷),它们是所属代的代表性物质。简要概述了该行业受到的监管限制,并介绍了美国采暖、制冷与空调工程师学会(ASHRAE)提出的安全分类和命名法。这篇综述主要收录了专利文献中才能找到的文献,但对该领域的学术和工业从业者同样具有同等的兴趣,因为它侧重于有机氟化学的基础,这些基础同样适用于更大分子的合成和其他应用的构建块。