Malektaj Haniyeh, Drozdov Aleksey D, Fini Elham, Christiansen Jesper de Claville
Department of Materials and Production, Aalborg University, Fibigerstraede 16, 9220 Aalborg, Denmark.
School of Sustainable Engineering and Built Environment, Arizona State University, 660 S College Ave, Tempe, AZ 85281, USA.
Molecules. 2024 Jan 2;29(1):244. doi: 10.3390/molecules29010244.
Ionically cross-linked alginate hydrogels are used in a wide range of applications, such as drug delivery, tissue engineering, and food packaging. A shortcoming of these gels is that they lose their strength and degrade at low pH values. To develop gels able to preserve their integrity in a wide range of pH values, Ca-alginate-montmorillonite nanocomposite gels are prepared, and their chemical structure, morphology, and mechanical response are analyzed. As the uniformity of nanocomposite gels is strongly affected by concentrations of MMT and CaCl it is revealed that homogeneous gels can be prepared with 4 wt.% MMT and 0.5 M CaCl at the highest. The viscoelastic behavior of nanocomposite gels in aqueous solutions with pH = 7 and pH = 2 is investigated by means of small-amplitude compressive oscillatory tests. It is shown that Ca-alginate-MMT nanocomposite gels preserve their integrity while being swollen at pH = 2. The experimental data are fitted by a model with only two material parameters, which shows that the elastic moduli increase linearly with a concentration of MMT at all pH values under investigation due to formation of physical bonds between alginate chains and MMT platelets. The presence of these bonds is confirmed by ATR-FTIR spectroscopy. The morphology of nanocomposite gels is studied by means of wide-angle X-ray diffraction, which reveals that intercalation of polymer chains between clay platelets increases the interlayer gallery spacing.
离子交联藻酸盐水凝胶被广泛应用于药物递送、组织工程和食品包装等众多领域。这些凝胶的一个缺点是在低pH值下会失去强度并降解。为了开发能够在广泛pH值范围内保持完整性的凝胶,制备了钙藻酸盐-蒙脱石纳米复合凝胶,并对其化学结构、形态和力学响应进行了分析。由于纳米复合凝胶的均匀性受蒙脱石(MMT)和氯化钙浓度的强烈影响,结果表明,最高可使用4 wt.%的MMT和0.5 M的氯化钙制备出均匀的凝胶。通过小振幅压缩振荡试验研究了纳米复合凝胶在pH = 7和pH = 2水溶液中的粘弹性行为。结果表明,钙藻酸盐-MMT纳米复合凝胶在pH = 2时溶胀的同时仍能保持其完整性。实验数据由一个仅包含两个材料参数的模型拟合,结果表明,在所研究的所有pH值下,由于藻酸盐链与MMT片层之间形成物理键,弹性模量随MMT浓度线性增加。通过衰减全反射傅里叶变换红外光谱(ATR-FTIR)证实了这些键的存在。通过广角X射线衍射研究了纳米复合凝胶的形态,结果表明聚合物链插入粘土片层之间会增加层间间距。