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Synthesis and super-swelling behavior of a novel protein-based superabsorbent hydrogel

机译:新型基于蛋白质的超吸收水凝胶的合成和超溶胀行为

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In this work,we synthesize a novel protein-based superabsorbent hydrogel and study its swelling behavior.The crosslinking graft copolymerization of acrylic acid (AA)onto the hydrolyzed collagen as a protein backbone was carried out in a homogeneous medium.Potassium persulfate (KPS)as an initiator and N,N-methylene bisacrylamide (MBA)as a crosslinker were used.The product's structure was established using FTIR spectroscopy.We were systematically optimized the certain variables of the graft copolymerization (i.e.the monomer,the initiator,and the crosslinker concentration)to achieve a hydrogel with maximum swelling capacity. Under this condition,maximum capacity of swelling in distilled water was found to be 920 g/g.Morphology of the optimized sample was examined by scanning electron microscopy (SEM).The swelling ratio in various salt solutions was also determined.Additionally,the swelling of superabsorbing hydrogels was measured in solutions with pH ranged from 1 to 13.The synthesized hydrogel exhibited a pH-responsiveness character so that a swelling-collapsing pulsatile behavior was recorded at pH 2 and 8.
机译:在这项工作中,我们合成了一种新型的基于蛋白质的超吸收性水凝胶,并研究了其溶胀行为。在均匀介质中进行了丙烯酸(AA)在水解胶原蛋白骨架上的交联接枝共聚反应。过硫酸钾(KPS) FTIR光谱法确定了产物的结构。我们对接枝共聚的某些变量(即单体,引发剂和交联剂)进行了系统优化。浓度)以达到具有最大溶胀能力的水凝胶。在此条件下,发现在蒸馏水中的最大溶胀量为920 g / g。通过扫描电子显微镜(SEM)检查优化样品的形貌,还确定了各种盐溶液中的溶胀率。在pH范围为1至13的溶液中测量了超吸收水凝胶的合成数量。合成的水凝胶具有pH响应特性,因此在pH 2和8下记录了溶胀-收缩的搏动行为。

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