羰基铁掺杂聚乙烯醇-硼砂基水凝胶动力学:准弹性中子散射研究

P. Dubey, M. B. Lawrence, H. Srinivasan, V. Sharma, S. Mitra
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摘要

本文采用准弹性中子散射(QENS)技术研究了羰基铁(CI)掺杂聚乙烯醇硼砂的动力学。其中硼砂和CI分别作为交联剂和掺杂剂,D2O作为溶剂。利用孟买DHRUVA的MARX光谱仪,在0.67 ~ 1.8 A−1的动量传递(Q)范围内进行测量。所考虑的模型恰当地描述了得到的实验参数。该模型假设聚合物链中的氢原子在固定半径为a的球形体积的球体中扩散,扩散系数为d。得到的球形体积半径为a=2.04 a,扩散系数为dped =0.53×10−5 cm2/sec,与我们之前对未掺杂样品的研究结果相比有所减小。该研究表明,CI的掺入限制了PVA聚合物链的动力学。本文采用准弹性中子散射(QENS)技术研究了羰基铁(CI)掺杂聚乙烯醇硼砂的动力学。其中硼砂和CI分别作为交联剂和掺杂剂,D2O作为溶剂。利用孟买DHRUVA的MARX光谱仪,在0.67 ~ 1.8 A−1的动量传递(Q)范围内进行测量。所考虑的模型恰当地描述了得到的实验参数。该模型假设聚合物链中的氢原子在固定半径为a的球形体积的球体中扩散,扩散系数为d。得到的球形体积半径为a=2.04 a,扩散系数为dped =0.53×10−5 cm2/sec,与我们之前对未掺杂样品的研究结果相比有所减小。该研究表明,CI的掺入限制了PVA聚合物链的动力学。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Dynamics in polyvinyl alcohol-borax based hydrogel doped with carbonyl iron: Quasielastic neutron scattering study
Here we have investigated the dynamics of polyvinyl alcohol-borax doped with carbonyl iron (CI) as studied using quasielastic neutron scattering (QENS) technique. Here borax and CI is used as a crosslinker and dopant respectively and D2O used as solvent. The measurements were carried out in the momentum transfer (Q) range of 0.67-1.8 A−1 using MARX spectrometer at DHRUVA, Mumbai. The considered model suitably described the obtained experimental parameters. This model assumes that the hydrogen atoms of polymer chains diffuse in sphere of spherical volume of fixed radius, a, with diffusion coefficient, D. The obtained values of radius of spherical volume, a=2.04 A and diffusion coefficient, Ddoped=0.53×10−5 cm2/sec, are found to be less compared to our earlier study on undoped samples. This study suggests that the incorporation of CI restricts the dynamics of PVA polymer chains.Here we have investigated the dynamics of polyvinyl alcohol-borax doped with carbonyl iron (CI) as studied using quasielastic neutron scattering (QENS) technique. Here borax and CI is used as a crosslinker and dopant respectively and D2O used as solvent. The measurements were carried out in the momentum transfer (Q) range of 0.67-1.8 A−1 using MARX spectrometer at DHRUVA, Mumbai. The considered model suitably described the obtained experimental parameters. This model assumes that the hydrogen atoms of polymer chains diffuse in sphere of spherical volume of fixed radius, a, with diffusion coefficient, D. The obtained values of radius of spherical volume, a=2.04 A and diffusion coefficient, Ddoped=0.53×10−5 cm2/sec, are found to be less compared to our earlier study on undoped samples. This study suggests that the incorporation of CI restricts the dynamics of PVA polymer chains.
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