化工学报 ›› 2025, Vol. 76 ›› Issue (10): 5003-5014.DOI: 10.11949/0438-1157.20250134

• 综述与专论 • 上一篇    下一篇

环保型氟碳化学品一氯一氟乙烯的制备与应用

李玲1(), 周鑫枭1, 马超峰1, 吴建2(), 于万金1(), 刘武灿1, 张建君1   

  1. 1.浙江省化工研究院有限公司含氟温室气体替代及控制处理国家重点实验室,浙江 杭州 310023
    2.中化蓝天氟材料有限公司,浙江 绍兴 312369
  • 收稿日期:2025-02-14 修回日期:2025-03-18 出版日期:2025-10-25 发布日期:2025-11-25
  • 通讯作者: 吴建,于万金
  • 作者简介:李玲(1986—),女,博士研究生,高级工程师,liling7@sinochem.com
  • 基金资助:
    浙江省“尖兵”“领雁”研发攻关计划项目(2024C01049)

Preparation and applications of eco-friendly fluorocarbon chemical chlorofluoroethylene

Ling LI1(), Xinxiao ZHOU1, Chaofeng MA1, Jian WU2(), Wanjin YU1(), Wucan LIU1, Jianjun ZHANG1   

  1. 1.State Key Laboratory of Fluorinated Greenhouse Gases Replacement and Control Treatment, Zhejiang Research Institute of Chemical Industry Co. , Ltd. , Hangzhou 310023, Zhejiang, China
    2.Sinochem Lantian Fluoro Materials Co. , Ltd. , Shaoxing 312369, Zhejiang, China
  • Received:2025-02-14 Revised:2025-03-18 Online:2025-10-25 Published:2025-11-25
  • Contact: Jian WU, Wanjin YU

摘要:

一氯一氟乙烯(HCFO-1131)是一种含氟原子、氯原子及碳碳双键官能团的功能性化合物,其独特的分子结构赋予其特殊的物理化学性质。作为合成铁电性/压电性含氟聚合物P(VDF-TrFE-CFE) 的核心单体(质量占比达7%~10%),该材料在智能传感、固态制冷及新能源器件领域展现出巨大应用潜力,预计未来市场需求有望呈指数级增长。综述了HCFO-1131的合成路径及其在智能材料领域的应用拓展。HCFO-1131的主要合成路线包括含氯烯烃的氟化法、氟氯烷烃锌粉还原脱卤法以及多卤代烷烃液碱/热/催化脱HCl法。然而,上述方法普遍存在转化率低、选择性差、三废排放量高等缺陷,严重制约其规模化量产进程。针对环境友好性与材料性能的协同需求,亟需优化现有工艺或开发新型合成策略,以实现HCFO-1131的绿色高效制备,进而推动其在生物医学柔性器件、固态制冷芯片及储能复合材料等前沿领域的应用,为下一代智能装备提供关键材料支撑。

关键词: 催化, 合成, 聚合物单体, 电活性聚合物, 电子材料,

Abstract:

Chlorofluoroethylene (HCFO-1131), containing fluorine atom, chlorine atom, and CC double bond, exhibits a unique molecular configuration that endows it with exceptional physicochemical properties. As the core monomer (7%—10% by mass) for the synthesis of ferroelectric/piezoelectric fluorinated polymers P(VDF-TrFE-CFE), this material shows great application potential in the fields of smart sensors, solid-state refrigeration and new energy devices, and the market demand is expected to grow exponentially in the future. This paper reviews the synthetic pathways of HCFO-1131 and its application in intelligence materials. Current synthetic routes primarily involve: halogen exchange reactions of chlorinated olefins, zinc-mediated reductive dehalogenation of fluorochlorocarbons, and dehydrochlorination of polyhalogenated hydrocarbons. However, these methodologies suffer from intrinsic drawbacks such as slow conversions, low selectivities, and large amount of waste, severely limiting their scalability in contemporary manufacturing. There is an urgent need to optimize existing processes or develop novel synthetic strategies to achieve green and efficient preparation of HCFO-1131, facilitating its applications in cutting-edge materials.

Key words: catalysis, synthesis, polymer monomers, electroactive polymer, electronic materials, fluorine

中图分类号: