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Modification of Chitosan Membranes via Methane Ion Beam

机译:甲烷离子束改性壳聚糖膜

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摘要

Chitosan has been used for biomedical applications in recent years, primarily because of its biocompatibility. A chitosan membrane with a 30 μm thickness was prepared and investigated for its surface modification using methane ions. Methane ions were implanted into the chitosan membrane using a Kaufman ion source; bombardment was accomplished using three accelerating voltages of ion beams—30, 55, and 80 kV. The influence of the ion bombardment on morphology, crystallinity, and hydrophilicity was investigated. Attenuated total reflectance Fourier-transform infrared (ATR-FTIR) spectroscopy analysis showed that a triplet bond appeared after the implantation of methane ions (acceleration voltage: 80 kV), culminating in the creation of a more amorphous membrane structure. The analyses of atomic force microscopy (AFM) images showed that, with the increase in bombardment energy, the roughness of the surface changed. These results revealed that ion bombardment improved the hydrophilicity of the membranes and the water fluxes of chitosan membranes altered after methane ion bombardment.
机译:壳聚糖近年来已用于生物医学应用,主要是因为其生物相容性。制备厚度为30μm的壳聚糖膜,并使用甲烷离子对其表面改性进行研究。使用考夫曼离子源将甲烷离子注入壳聚糖膜中。使用三个加速的离子束电压(30 kV,55 kV和80 kV)完成轰击。研究了离子轰击对形态,结晶度和亲水性的影响。衰减全反射傅立叶变换红外(ATR-FTIR)光谱分析表明,在注入甲烷离子(加速电压:80 kV)后出现了三重键,最终形成了更加无定形的膜结构。原子力显微镜(AFM)图像分析表明,随着轰击能量的增加,表面粗糙度发生变化。这些结果表明,离子轰击提高了膜的亲水性,并且甲烷轰击后壳聚糖膜的水通量发生了变化。

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