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Synthesis and applications of novel antimicrobial polymeric materials.

机译:新型抗菌高分子材料的合成与应用。

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Antimicrobial precursors, especially N-halamine precursors, were developed and synthesized. After being applied onto polymers and fibers, the durability, rechargeability and antibacterial efficacy of the N-halamine-treated polymers and fibers were evaluated. An s-triazine-based reactive group was synthesized and used for attaching N-halamine precursor onto cotton fabrics, and crosslinking agents were employed for antimicrobial finishing. An antimicrobial acrylic fiber and m-aramid/cellulose composite fiber were invented and prepared using the dry-jet wet spinning process, and physical properties, as well as antimicrobial efficacy, were investigated.; After synthesizing and characterizing an s-triazine-based N-halamine precursor, dichloro-m-aminophenylhydantoinyl- s-triazine (DAPHT), this was applied to cotton fabrics through a reactive dyeing process. The optimum condition through the dyeing process was investigated. Due to the lower dyeing temperature (∼30°C), the application allows mild processing conditions. Since even after 50 standard-washing cycles the recharged chlorine-recovery was over 60%, the durability of the material is sufficient for practical application. Bacterial efficacy tests resulted in inactivation of both Gram-positive and Gram-negative bacteria within 30 min with 6 log reductions.; To apply m-aminophenyl hydantoin (MAPH) onto cotton fabric, polycarboxylic acids provided good connection between MAPH and cotton cellulose. Through one finishing process, the MAPH treated cotton fabrics have durable press properties as well as antimicrobial activities. The chlorinated BTCA/MAPH treated cotton fabric provided inactivation against Gram-positive and Gram-negative bacteria within 1 min of contact time.; An antimicrobial-acrylic fiber precursor (PAN/PSH composite fiber) was produced by dry-jet wet spinning. The acrylic fiber possessed durable and rechargeable antimicrobial properties up to 50 standard washing cycles, and the chlorinated acrylic fibers inactivated S. aureus (Gram-positive bacteria) within 30 min.; Cellulose and m-aramid were dissolved in an ionic liquid, and dry-jet wet spinning was used to prepare composite fibers which could be rendered antimicrobial through exposure to chlorine bleach. Chlorination of the aramid nitrogen produced antimicrobial properties which were retained over 50 standard-washing cycles. Cellulose/m-aramid blends showed a much higher chlorination level than the pure maramid fiber. Up to 10% (based on the weight of cellulose) m-aramid composite fibers did not produce any decrease in mechanical properties. The chlorinated fibers inactivated both E. coli O157:H7 (Gram-negative bacteria) and S. aureus (Gram-positive bacteria) within 5 min with 6 log reductions.; As medical textiles and biomaterials for healthcare, N-halamine treated polymers and fibers have potential for commercial use and through this research, novel and variable applications are suggested.
机译:抗菌前体,特别是N-卤胺前体已开发并合成。在被施加到聚合物和纤维上之后,评估了经N-卤胺处理的聚合物和纤维的耐久性,再充电性和抗菌功效。合成基于s-三嗪的反应性基团,并将其用于将N-卤胺前体附着到棉织物上,并使用交联剂进行抗菌整理。发明了一种抗微生物丙烯酸纤维和间-芳族聚酰胺/纤维素复合纤维,并采用干喷湿纺工艺制备,并对其物理性能和抗微生物功效进行了研究。在合成并表征了基于s-三嗪的N-卤胺前体二氯-间-氨基苯基乙内酰脲基-s-三嗪(DAPHT)之后,通过反应性染色工艺将其应用于棉织物。研究了整个染色过程的最佳条件。由于较低的染色温度(约30°C),该应用程序允许温和的处理条件。由于即使经过50次标准洗涤循环,再填充的氯回收率也超过60%,因此该材料的耐用性足以满足实际应用。细菌功效测试导致30分钟内革兰氏阳性菌和革兰氏阴性菌均失活,减少了6 log。为了将间氨基苯基乙内酰脲(MAPH)应用于棉织物,多元羧酸在MAPH和棉纤维素之间提供了良好的连接。通过一种后整理工艺,经过MAPH处理的棉织物具有持久的压榨性能和抗菌活性。氯化BTCA / MAPH处理的棉织物在接触时间内1分钟内可灭活革兰氏阳性和革兰氏阴性细菌。通过干喷湿纺法生产抗微生物丙烯酸纤维前体(PAN / PSH复合纤维)。丙烯酸纤维在50个标准洗涤周期内具有持久的可充电抗菌性能,氯化丙烯酸纤维在30分钟内灭活了金黄色葡萄球菌(革兰氏阳性细菌)。将纤维素和间位芳族聚酰胺溶解在离子液体中,然后使用干喷湿法纺丝制备复合纤维,该复合纤维可通过暴露于氯漂白剂而使其具有抗菌性。芳族聚酰胺氮的氯化产生了抗菌性能,该性能在50个标准洗涤循环中得以保留。纤维素/间-芳族聚酰胺共混物显示出比纯马拉米纤维高得多的氯化水平。高达10%(基于纤维素的重量)的间位芳纶复合纤维不会导致机械性能的任何下降。氯化纤维在5分钟内灭活了O157:H7大肠杆菌(革兰氏阴性细菌)和金黄色葡萄球菌(革兰氏阳性细菌),减少了6 log。作为用于医疗保健的医用纺织品和生物材料,经N-卤胺处理的聚合物和纤维具有商业用途的潜力,并且通过这项研究,提出了新颖而可变的应用。

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