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A study on the interaction of cationized chitosan with cellulose surfaces

机译:阳离子化壳聚糖与纤维素表面相互作用的研究

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摘要

This investigation describes the interaction of trimethyl chitosans (TMCs) with surfaces of cellulose thin films. The irreversible deposition/ adsorption of TMCs with different degrees of cationization was studied with regards to the salt concentration and pH. As substrates, cellulose thin films were prepared by spin coating from trimethylsilyl cellulose and subsequent regeneration to pure cellulose. The pH-dependent zeta potential of cellulose thin films and the charge of TMCs were determined by streaming potential and potentiometric charge titration methods. A quartz crystal microbalance with dissipation monitoring was further used as a nanogram sensitive balance to detect the amount of deposited TMCs and the swelling of the bound layers. The morphology of the coatings was additionally characterized by atomic force microscopy and related to the adsorption results. A lower degree of cationization leads to higher amounts of deposited TMCs at all salt concentrations. Higher amounts of salt increase the deposition of TMCs. Protonation of primary amino groups results in the immobilization of less material at lower pH values. The results from this work can further be extended to the modification of regenerated cellulosic materials to obtain surfaces, with amino- and trimethylammonium moieties.
机译:这项研究描述了三甲基壳聚糖(TMC)与纤维素薄膜表面的相互作用。关于盐浓度和pH,研究了不同阳离子化程度的TMC的不可逆沉积/吸附。作为基材,通过从三甲基硅烷基纤维素旋涂并随后再生为纯纤维素来制备纤维素薄膜。纤维素薄膜的pH依赖性zeta电位和TMC的电荷通过流动电位和电位滴定法确定。具有耗散监测功能的石英微天平还被用作纳克灵敏天平,以检测沉积的TMC数量和结合层的溶胀。涂层的形态还通过原子力显微镜表征,并与吸附结果有关。在所有盐浓度下,较低的阳离子化程度会导致大量的沉积TMC。更高数量的盐会增加TMC的沉积。伯氨基的质子化导致较少的材料在较低的pH值下固定化。这项工作的结果可以进一步扩展到改性纤维素材料的改性,以获得具有氨基和三甲基铵部分的表面。

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