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首页> 外文期刊>Journal of Applied Polymer Science >Modified CMC. V. Synthesis and super-swelling behavior of hydrolyzed CMC-g-PAN hydrogel
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Modified CMC. V. Synthesis and super-swelling behavior of hydrolyzed CMC-g-PAN hydrogel

机译:修改后的CMC。五,水解CMC-g-PAN水凝胶的合成及超溶胀行为

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Polyacrylonitrile (PAN) was grafted onto carboxymethyl cellulose (CMC) sodium salt backbones by using ceric ammonium nitrate (CAN) as an initiator. The graft copolymer, CMC-g-PAN, was hydrolyzed by NaOH solution to yield hydrogel, H-CMC-g-PAN. The nitrile groups of CMC-g-PAN were completely converted to a mixture of hydrophilic carboxamide and carboxylate groups during alkaline hydrolysis, followed by in situ crosslinking of the grafted PAN chains. The structure of the products was confirmed by FTIR spectroscopy. The synthetic parameters affecting the swelling capacity of the hydrogel (i.e., CMC-g-PAN add-on value, the hydrolysis time and temperature, and concentration of NaOH) were systematically optimized to achieve maximum swelling. Absorbency was also measured in various salt solutions. The H-CMC-g-PAN product was recognized to be a smart hydrogel with superswelling properties. Several swelling changes of the hydrogel were observed in lieu of pH variations in a wide range (1-13). Also, the pH reversibility and on-off switching behavior make the hydrogel a good candidate for controlled delivery of bioactive agents. (c) 2006 Wiley Periodicals, Inc.
机译:以硝酸铈铵(CAN)为引发剂,将聚丙烯腈(PAN)接枝到羧甲基纤维素(CMC)钠盐骨架上。将接枝共聚物CMC-g-PAN用NaOH溶液水解,得到水凝胶H-CMC-g-PAN。在碱性水解过程中,CMC-g-PAN的腈基完全转化为亲水性羧酰胺基团和羧酸酯基团的混合物,然后进行接枝的PAN链的原位交联。产物的结构通过FTIR光谱确认。系统地优化了影响水凝胶溶胀能力的合成参数(即CMC-g-PAN附加值,水解时间和温度以及NaOH的浓度)以实现最大溶胀。还测量了各种盐溶液的吸光度。 H-CMC-g-PAN产品被认为是具有超溶胀特性的智能水凝胶。观察到水凝胶发生了一些溶胀变化,代替了较宽的pH值变化范围(1-13)。而且,pH可逆性和开-关转换行为使水凝胶成为控制生物活性剂输送的良好候选者。 (c)2006年Wiley Periodicals,Inc.

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