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Preparation of antimicrobial-wet strength polymer and its polyelectrolyte complex as novel functional additives

机译:新型抗湿强度高的聚合物及其聚电解质配合物的制备

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In this paper, novel polymers with synergistic wet strength and antimicrobial activity were synthesized by the condensation polymerization from hexamethylene diamine, diethylenetriamine and guanidine hydrochloride, followed by the crosslinking with epichlorohydrin. The formed four-membered azetidinium ring (AZR) is the effective group for developing wet strength of paper, meanwhile the guanidio group is the effective antimicrobial group due to its similarity to guanidine polymer. 2D heteronuclear correlation NMR spectroscopy (C-H COSY) was used to characterize the molecular structure of synthesized polymer. Minimum inhibition concentration (MIC), UV_(260) absorption and atomic force microscopy (AFM) were applied to reveal the antimicrobial effectiveness and morphological change of bacteria cells. Anionic carboxymethyl cellulose (CMC) was chosen to form polyelectrolyte complex (PEC) with the antimicrobial-wet strength polymer in an attempt to further increase wet strength and dry strength of paper. The characteristics of layer-by-layer assembly of PEC multilayers from antimicrobial-wet strength polymer and CMC was further revealed using AFM.
机译:本文通过六亚甲基二胺,二亚乙基三胺和盐酸胍的缩聚反应,再与环氧氯丙烷交联,合成了具有协同湿强度和抗菌活性的新型聚合物。形成的四元氮杂环丁烷环(AZR)是提高纸张湿强度的有效基团,而胍基由于与胍聚合物的相似性是有效的抗菌基团。使用二维异核相关NMR光谱(C-H COSY)表征合成聚合物的分子结构。应用最小抑菌浓度(MIC),UV_(260)吸收和原子力显微镜(AFM)揭示细菌细胞的抗菌效果和形态变化。选择阴离子羧甲基纤维素(CMC)与抗微生物湿强度聚合物形成聚电解质络合物(PEC),以试图进一步提高纸张的湿强度和干强度。使用AFM进一步揭示了由抗湿强度聚合物和CMC构成的PEC多层膜的逐层组装特性。

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