紫外聚合过程中松弛时间T1和T2的测量和处理

R. Kořínek, K. Bartusek, J. Vondrak, P. Marcon
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引用次数: 0

摘要

本文介绍了用于测量聚合过程中导电凝胶结构性质的基本磁共振(MR)方法,特别是弛豫时间T1, T2。测定了以氯化钠无机盐为基础的凝胶电解质。测量涉及到23Na核。在我们的例子中,为了测量松弛时间T2,我们使用了哈恩回波。为了测量松弛时间T1,使用IR技术(反演恢复)。弛豫时间T2由谱线近似得到,弛豫时间T2由两次自旋回波衰减信号用两个指数用遗传算法近似得到。聚合过程中23Na核弛豫时间T2和T1的变化表明了基于NaClO4的凝胶电解质的内部结构和化学组成的变化。
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Measurement and processing of relaxation times T1 and T2 during the UV polymerization process
In this paper are introduced basic magnetic resonance (MR) methods for measuring the properties of the conductive gel structure during polymerization, particularly relaxation times T1, T2. Gel electrolytes based on the NaClO4 inorganic salt was measured. The measurement deals with 23Na nuclei. In our case to measure relaxation time T2, the Hahn echo was used. To measure relaxation time T1, the IR techniques (Inversion Recovery) was used. The value of relaxation time T2 is obtained by approximation of spectral lines and the value of relaxation time T2 is obtained by approximation of spin echo decline signal with two exponentials using a genetic algorithm for both times. The change of relaxation times T2 and T1 of 23Na nuclei during polymerization process indicate a change in the internal structure and chemical composition of gel electrolytes based on NaClO4.
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