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四氟乙烯三元共聚物:曾经前景广阔——在21世纪还有发展前景吗?第二部分:加工、性能与应用

TFE Terpolymers: Once Promising - Are There Still Perspectives in the 21 Century? Part II: Processing, Properties, Applications.

作者信息

Ok Salim, Steinhart Martin, Améduri Bruno

机构信息

Petroleum Research Center, Kuwait Institute for Scientific Research, P.O. box 24885, Safat, 13109, Kuwait.

School of Biology and Chemistry and CellNanOs, Universität Osnabrück, Barbarastr. 7, 49069, Osnabrück, Germany.

出版信息

Macromol Rapid Commun. 2024 Dec;45(23):e2400412. doi: 10.1002/marc.202400412. Epub 2024 Oct 1.

Abstract

Tetrafluoroethylene (TFE) terpolymers have emerged as advantageous substitutes for polytetrafluoroethylene (PTFE). Therefore, they are being considered as alternatives to PTFE in many application areas. The advantages of TFE terpolymers include their facile processability at elevated temperatures, their solubility in some polar organic solvents, their inertness against aqueous acids, aqueous bases and a large number of mostly nonpolar organic solvents, their low dielectric constant, their low refractive index as well as useful electro- and thermochemical properties. This review on TFE terpolymers focuses on their processing including shaping and surface modification as well as on selected properties including wettability, dielectric properties, mechanical response behavior, chemical stability, and degradability. Applications including their use as elastomeric sealing material, liner and cladding layer as well as their use as material for membranes, microfluidic devices, photonics, photovoltaics, energy storage, energy harvesting, sensors, and nanothermitic composites will be discussed. The review concludes with a discussion of the future potential of TFE terpolymers and scientific challenges to be addressed by future research on TFE terpolymers.

摘要

四氟乙烯(TFE)三元共聚物已成为聚四氟乙烯(PTFE)的有利替代品。因此,在许多应用领域中,它们正被视为PTFE的替代物。TFE三元共聚物的优点包括在高温下易于加工、可溶于某些极性有机溶剂、对水性酸、碱和大量主要为非极性的有机溶剂具有惰性、低介电常数、低折射率以及有用的电和热化学性质。这篇关于TFE三元共聚物的综述重点关注其加工过程,包括成型和表面改性,以及选定的性能,包括润湿性、介电性能、力学响应行为、化学稳定性和降解性。还将讨论其应用,包括用作弹性密封材料、衬里和包覆层,以及用作膜、微流控装置、光子学、光伏、能量存储、能量收集、传感器和纳米铝热剂复合材料的材料。综述最后讨论了TFE三元共聚物的未来潜力以及未来对TFE三元共聚物研究需要解决的科学挑战。

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