Fluorinated polymers: evaluation and characterization of structure and composition

A. Ivanov, N. Belov
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引用次数: 2

Abstract

The proposed review represents the systematic analysis of modern methods and approaches for the characterization and structural evaluation of fluorinated polymers that have found a wide application as materials for chemical processing, chemically resistant components and coatings, pharmaceutical and electrical packaging, biomedical equipment, etc. The chemical composition of the polymers (fluorine content, its distribution inside the fluorinated materials, chemical bonds, presence of oxygen-containing groups) substantially influences on the operation properties (chemical resistance, adhesive, cohesive, optical, dielectrical, thermal, barrier, gas permeation) of the final polymeric products. Hence, it was of particularly importanсe to bond the emergence of specific features with the presence of fluorine in the chemical structure of polymer by means of related analytical techniques. Namely, we focused on spectral (IR, UV-VIS, NMR, XPS, EPR), chemical (elemental analysis), Secondary-ion mass spectroscopic (SIMS) and microscopic (AFM, SEM-EDX) methods emphasizing their general consideration and limitations as well as application for the in-depth characterization.
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含氟聚合物:结构和组成的评价和表征
拟议的审查是对氟化聚合物的表征和结构评价的现代方法和途径的系统分析,氟化聚合物已广泛应用于化学加工、耐化学成分和涂层、制药和电气包装、生物医学设备等材料。聚合物的化学组成(氟含量、氟在氟化材料中的分布、化学键、含氧基团的存在)对最终聚合物产品的操作性能(耐化学性、粘接性、内聚性、光学性、介电性、热性、阻隔性、透气性)有重大影响。因此,利用相关分析技术将聚合物化学结构中氟的存在与特定特征的出现联系起来就显得尤为重要。也就是说,我们侧重于光谱(IR, UV-VIS, NMR, XPS, EPR),化学(元素分析),二次离子质谱(SIMS)和微观(AFM, SEM-EDX)方法,强调它们的一般考虑和局限性以及在深入表征中的应用。
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