电子顺磁共振
聚合物
一氧化氮介导的自由基聚合
顺磁性
定点自旋标记
化学物理
共价键
自旋(空气动力学)
抗磁性
材料科学
自旋探针
化学
纳米技术
核磁共振
凝聚态物理
有机化学
自由基聚合
物理
聚合
磁场
热力学
量子力学
作者
Md Alim Uddin,Haojie Yu,Li Wang,Kaleem‐ur‐Rahman Naveed,Fazal Haq,Bilal Ul Amin,Sahid Mehmood,Ahsan Nazir,Yusheng Xing,Di Shen
摘要
Abstract The EPR technique is commonly used for the detection and characterization of paramagnetic centers in chemical science. This method can provides a lot of information, such as identity, structure, dynamics, interaction, orientation, glass transition temperature, adsorption behavior, functionality, phase behavior, nano‐inhomogeneities, and conformation of the free‐radical portion of the polymer chain. Most polymers intrinsically possess diamagnetic properties, so in order to study polymers with EPR, paramagnetic centers need to be incorporated into the polymer systems. Spin labeling and spin probing are main methods of covalently attaching paramagnetic centers to polymer chains or embedding them in polymer matrices through non‐covalent interactions, respectively. Spin labeling and spin probing techniques for polymers and polymer systems (especially with nitroxide radicals) have also been studied, which have a profound impact on polymer science. This review focuses on the continuous wave EPR technique and introduces the recent advances in spin labeled polymers and spin probed polymer systems in EPR research.
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