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首页> 外文期刊>Journal of biomedical materials research. Part B, Applied biomaterials. >Synthesis of superporous hydrogels: hydrogels with fast swelling and superabsorbent properties.
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Synthesis of superporous hydrogels: hydrogels with fast swelling and superabsorbent properties.

机译:超多孔水凝胶的合成:具有快速溶胀和超吸收性能的水凝胶。

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We have been interested in the synthesis of hydrogels with fast swelling kinetics and superabsorbent properties. To increase the water absorption rate, interconnected pores were introduced to the hydrogels. Since the pore size in the dried hydrogels is in the order of hundreds of micrometers, these hydrogels are called "superporous" hydrogels. Superporous hydrogels were synthesized by crosslinking polymerization of various vinyl monomers in the presence of gas bubbles formed by the chemical reaction of acid and NaHCO3. The polymerization process was optimized to capture the gas bubbles inside the synthesized hydrogels. The use of the NaHCO3/acid system allowed easy control of timing for gelation and foam formation. We found that PF127 was the best foam stabilizer for most of the monomer systems used in our study. Scanning electron microscope (SEM) pictures showed interconnected pores forming capillary channels. The capillary channels, which were critical for fast swelling, were preserved during drying by dehydrating water-swollen hydrogels with ethanol before drying. The ethanol-dehydrated superporous hydrogels reached equilibrium swelling within minutes. The equilibrium swelling time could be reduced to less than a minute with the use of a wetting agent. In our study, water moisture was used as a wetting agent since the amount of moisture content in the dried hydrogels easily could be controlled. Preparation of superporous hydrogels using the right blowing system, foam stabilizer, drying method, and wetting agent makes it possible to reduce the swelling time to less than a minute regardless of the size of the dried gels. The superporous hydrogels can be used where fast swelling and superabsorbent properties are critical. Copyright 1999 John Wiley & Sons, Inc.
机译:我们对具有快速溶胀动力学和超吸收性能的水凝胶的合成感兴趣。为了提高吸水率,将相互连接的孔引入到水凝胶中。由于干燥的水凝胶中的孔径约为数百微米,因此这些水凝胶被称为“超孔”水凝胶。通过在酸与NaHCO3的化学反应形成的气泡的存在下,使各种乙烯基单体交联聚合,可以合成超多孔水凝胶。对聚合过程进行了优化,以捕获合成水凝胶内部的气泡。使用NaHCO3 /酸系统可以轻松控制胶凝和泡沫形成的时间。我们发现,对于我们在研究中使用的大多数单体系统,PF127是最佳的泡沫稳定剂。扫描电子显微镜(SEM)图片显示相互连接的孔形成毛细管通道。对于快速溶胀至关重要的毛细管通道,在干燥过程中通过在干燥前用乙醇使水溶胀的水凝胶脱水来保存。乙醇脱水的超孔水凝胶在数分钟内达到平衡溶胀。使用润湿剂可以将平衡溶胀时间减少到不到一分钟。在我们的研究中,水水分被用作润湿剂,因为干燥水凝胶中的水分含量很容易控制。使用正确的发泡系统,泡沫稳定剂,干燥方法和润湿剂制备超多孔水凝胶,无论干燥凝胶的大小如何,都可以将溶胀时间减少至不到一分钟。在需要快速溶胀和超强吸收性能的地方,可以使用超孔水凝胶。版权所有1999 John Wiley&Sons,Inc.

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