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首页> 外文期刊>Biomacromolecules >Antibacterial Cellulose Fiber via RAFT Surface Graft Polymerization
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Antibacterial Cellulose Fiber via RAFT Surface Graft Polymerization

机译:通过RAFT表面接枝聚合制备抗菌纤维素纤维

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2-(Dimethylamino)ethyl methacrylate(DMAEMA)was polymerized from cellulosic filter paper via reversible addition-fragmentation chain transfer(RAFT)polymerization.The tertiary amino groups of the grafted PDMAEMA chains were subsequently quaternized with alkyl bromides of different chain lengths(C_8-C_(16))to provide a large concentration of quaternary ammonium groups on the cellulose surface.The antibacterial activity of the quaternized and nonquaternized PDMAEMA-grafted cellulosic fibers was tested against Escherichia coli.The antibacterial activity was found to depend on the alkyl chain length and on the degree of quaternization,i.e.,the amount of quaternary amino groups present in the cellulose graft copolymers.The PDMAEMA-grafted cellulose fiber with the highest degree of quaternization and quaternized with the shortest alkyl chains was found to exhibit particularly high activity against E.coli.
机译:通过可逆的加成-断裂链转移(RAFT)聚合反应从纤维素滤纸聚合了甲基丙烯酸2-(二甲氨基)乙基酯(DMAEMA)。随后将接枝的PDMAEMA链的叔氨基与不同链长的烷基溴进行季铵化(C_8- C_(16))在纤维素表面上提供大量的季铵基团。测试了季铵化和非季铵化的PDMAEMA接枝纤维素纤维对大肠杆菌的抗菌活性,发现其抗菌活性取决于烷基链长发现季铵化程度最高,烷基链最短的PDMAEMA接枝纤维素纤维对E的活性特别高,而且取决于季铵化程度,即纤维素接枝共聚物中存在的季氨基数量。 .coli。

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