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Fabrication of chitosan/graphene oxide composite aerogel microspheres with high bilirubin removal performance

机译:具有高胆红素去除性能的壳聚糖/氧化石墨烯复合气凝胶微球的制备

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Functional chitosan/graphene oxide (CS/GO) composite aerogel microspheres were fabricated via CO2 supercritical drying, which displayed excellent performance for bilirubin removal. The morphology and chemical structure of CS/GO composite aerogel microspheres were characterized, which illustrated a nanoporous structure with a maximum specific surface area of 174.69 m(2)/g, and a special pore size distribution at 20-40 nm, also a good mechanical property. Importantly, the composite aerogel microspheres (10% GO) revealed a large adsorption capacity (178.25 mg/g) for bilirubin within 2 h. Dynamic adsorption experiment illustrated that the aerogel microspheres adsorbed much more bilirubin with a shorter equilibrium time of about 30 min. Besides, the adsorption mechanism of bilirubin by the CS/GO composite aerogel microspheres was investigated through the relevant model fitting, including adsorption kinetics and adsorption isotherm, which illustrated that the mechanism included both physical and chemical processes, but chemical adsorption was dominated. Adsorption isotherm indicated that bilirubin adsorption by the microspheres was fitted well with Freundlich isotherm, which ascribed to multilayer adsorption. After five adsorption-desorption cycles, the adsorption capacity still maintains large adsorption capacity. In addition, the hemolysis rate and coagulation time tests presented the good blood compatibility for the adsorbents. Therefore, the CS/GO composite aerogel microspheres with rapid, high adsorption capacity and good blood compatibility might be promising for hyperbilirubinemia treatment.
机译:功能壳聚糖/氧化石墨烯(CS / GO)复合气凝胶微球是通过CO2超临界干燥制备的,显示出优异的去除胆红素的性能。表征了CS / GO复合气凝胶微球的形态和化学结构,表明其最大比表面积为174.69 m(2)/ g,并且在20-40 nm处具有特殊的孔径分布,具有良好的纳米孔结构。机械性能。重要的是,复合气凝胶微球(10%GO)在2小时内显示出对胆红素的大吸附能力(178.25 mg / g)。动态吸附实验表明,气凝胶微球吸附了更多的胆红素,平衡时间较短,约为30分钟。此外,通过相关模型拟合研究了CS / GO复合气凝胶微球对胆红素的吸附机理,包括吸附动力学和吸附等温线,表明该机理既包括物理过程,也包括化学过程,但化学吸附占主导地位。吸附等温线表明,微球对胆红素的吸附与Freundlich等温线吻合得很好,这归因于多层吸附。在五个吸附-解吸循环之后,吸附容量仍保持较大的吸附容量。另外,溶血速率和凝结时间测试表明吸附剂具有良好的血液相容性。因此,具有快速,高吸附能力和良好血液相容性的CS / GO复合气凝胶微球可能有望用于高胆红素血症的治疗。

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