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A dynamic chitosan-based self-healing hydrogel with tunable morphology and its application as an isolating agent

机译:一种动态壳聚糖的自愈水凝胶,可调谐形态及其应用作为隔离剂

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摘要

A biopolymer chitosan based 3D hydrogel framework (ChF) with good transparency and rapid self-healing activity has been successfully synthesized and utilized to get high purity separation of long-lived fission products Eu-152 (T-1/ 2 = 13.33 a) and Cs-137 (T-1/ 2 = 30.17 a) employing solid liquid extraction (SLX) technique. The unique properties of covalently cross-linked polymeric ChF have been analyzed through FT-IR, solid-state (CP)-C-13/MAS NMR, rheological measurement, SEM, AFM, TG-DTG, DSC, XRD and swelling study. Rheological analysis reveals that the maximum mechanical strength of a hydrogel is achieved upon synthesis using 1 : 0.43 chitosan to formaldehyde stoichiometry (ChF3). A plateau of storage modulus (G'), over a wide range of angular frequency of ChF reveals its visco elastic nature. On varying the cross linking of the hydrogel network, we found a precise tuning of morphology and properties of ChF. This ChF was utilized to separate Eu-152 from a mixture of Eu-152 and Cs-137 in aqueous HCl medium (pH 5) using SLX technique and it was observed that ChF specifically adsorbs Eu-152 without any contamination from Cs-137. Eu-152 was back extracted easily using 1 M aqueous HCl from Eu-152-adsorped-ChF. The adsorption of Eu-152 on ChF is influenced by pH, amount of hydrogel, time of contact, temperature, cross-linking density and dosage of gamma-radiation. To establish the self-healing property of the gels, rheological analysis through step-strain measurements (strain = 0.1 to 100%) at 25 degrees C was monitored. The polymeric hydrogel network displays a reversible sol-gel transition for several cycles due to the dynamic equilibrium between the Schiff base linkage and the aldehyde and amine functional groups.
机译:基于含有良好透明度和快速自愈活动的基于生物聚合物的壳聚糖3D水凝胶框架(CHF),并利用了高纯度分离的长寿裂变产品EU-152(T-1/2 = 13.33A)和CS-137(T-1/2 = 30.17A)采用固体液萃取(SLX)技术。通过FT-IR,固态(CP)-C-13 / Mas NMR,流变测量,SEM,AFM,TG-DTG,DSC,XRD和肿胀研究,分析了共价交联聚合物CHF的独特性质。流变分析表明,使用1:0.43壳聚糖对甲醛化学计量(CHF3)合成,在合成时实现了水凝胶的最大机械强度。储存模量(G')的平台,在CHF的各种角频率范围内揭示了其粘体弹性性质。在改变水凝胶网络的交叉连接时,我们发现CHF的形态和性质的精确调整。使用SLX技术将该CHF与HCl培养基(pH5)水溶液中的Eu-152和CS-137的混合物分离Eu-152,观察到CHF特别吸附EU-152,没有CS-137的任何污染。通过来自Eu-152- adsorpe-CHF的1M水溶液,容易地提取EU-152。 EU-152对CHF的吸附受PH,水凝胶,接触时间,温度,交联密度和γ-辐射的剂量的影响。为了建立凝胶的自愈性,监测通过步进菌株测量(菌株= 0.1至100%)在25℃下的流变分析。聚合物水凝胶网络由于席克碱衔接和醛和胺官能团之间的动态平衡而显示出几个循环的可逆溶胶 - 凝胶转变。

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  • 来源
    《RSC Advances》 |2016年第84期|共9页
  • 作者单位

    Indian Inst Engn Sci &

    Technol Shibpur Dept Chem Howrah 711103 India;

    Saha Inst Nucl Phys Chem Sci Div Sec 125 Kolkata 700064 India;

    Saha Inst Nucl Phys Chem Sci Div Sec 125 Kolkata 700064 India;

    Indian Inst Engn Sci &

    Technol Shibpur Dept Chem Howrah 711103 India;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学;
  • 关键词

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