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PVAm Nanofibers Fabricated by Rotary Jet Wet Spinning and Applied to Bisphenol A Recognition

机译:旋转喷射湿纺法制备PVAm纳米纤维及其在双酚A识别中的应用

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Poly(vinylamine) (PVAm) is an important polymer with the highest content of primary amine groups of any polymer. PVAm has a great potential in selective separation and smart materials. It is difficult to fabricate pure PVAm nanofibers by electrospinning and rotary jet spinning (RJS) without additional polymers. In this work, rotary jet wet spinning (RJWS) was applied to fabricate molecular imprinting nanofibers (MINFs) with polyelectrolyte for the first time. Initially, optimal parameters of spinning are investigated, including coagulation bath, solution viscosity, and rotation speed. The PVAm aqueous solution is sensitive to alcohol. To demonstrate RJWS application, PVAm-based MINFs for bisphenol A (one endocrine disruptor) recognition are prepared by adding dummy template, cross-linking, and template elution. The association constant (8.6 mg/L), equilibrium time (30 min), and binding sites utilization rate (80%) of MINFs are evaluated. Its adsorption amount and selectivity are little lower than those of MIPs prepared by bulk polymerization; however, its adsorption speed is faster than that of MIPs.
机译:聚乙烯胺(PVAm)是一种重要的聚合物,其伯胺基团含量是所有聚合物中最高的。 PVAm在选择性分离和智能材料方面具有巨大潜力。在没有其他聚合物的情况下,很难通过电纺和旋转喷射纺丝(RJS)来制造纯PVAm纳米纤维。在这项工作中,首次将旋转喷射湿纺(RJWS)应用于用聚电解质制造分子印迹纳米纤维(MINF)。最初,研究了纺丝的最佳参数,包括凝固浴,溶液粘度和转速。 PVAm水溶液对酒精敏感。为了演示RJWS的应用,通过添加虚拟模板,交联和模板洗脱来制备用于双酚A(一个内分泌干扰物)识别的基于PVAm的MINF。评价了MINF的缔合常数(8.6 mg / L),平衡时间(30分钟)和结合位点利用率(80%)。它的吸附量和选择性略低于本体聚合制备的MIP。但是,它的吸附速度比MIP快。

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