National Research Centre (Scopus affiliation ID 60014618), Textile Research Division, Pre-treatment and Finishing of Cellulosic Fibres Department, 33-El-Behouth St. (former El-Tahrir str.), Dokki, P.O. 12622, Giza, Egypt.
National Research Centre (Scopus affiliation ID 60014618), Textile Research Division, Pre-treatment and Finishing of Cellulosic Fibres Department, 33-El-Behouth St. (former El-Tahrir str.), Dokki, P.O. 12622, Giza, Egypt.
Int J Biol Macromol. 2018 Jan;106:1192-1202. doi: 10.1016/j.ijbiomac.2017.08.127. Epub 2017 Aug 26.
Loomstate-, scoured- and bleached cotton fabrics were first activated by treatment with ethanolamine and; thus obtained three fabrics were submitted independently to in-situ formation of silver nanoparticles (AgNPs) using different concentrations of silver nitrate (AgNO3) in absence of other external precursor. The magnitude of AgNPs on the fabric increases by increasing AgNO concentrations during synthesis of AgNPs loaded fabrics irrespective of the fabric used. Loomstate- and scoured cotton fabrics with the highest amount of AgNPs exhibit spherical shape with less aggregates; opposite to their bleached mate where AgNPs are irregularly shaped with bigger size due to aggregation. The formation of AgNPs is confirmed through monitoring UV-vis absorption peak. Results signify also the formation of high density coating of silver on the surface of cotton fabric. Fabrics loaded with AgNPs exhibit superior antibacterial activity. Treatment with distilled water of AgNPs loaded scoured cotton fabric filtered by centrifugation verify the very slow launching of AgNPs indicating excellent durability; a point which advocates the use of such fabrics in infection prevention applications. Indeed, the basic and practice entailed in current studies can be nominated strongly for cleaner bactericidal finishing of cotton.
磨毛-、丝光-和漂白棉织物首先通过用乙醇胺处理进行活化;由此获得的三种织物独立地在不存在其他外部前体的情况下用不同浓度的硝酸银(AgNO3)进行原位形成银纳米粒子(AgNPs)。在合成负载 AgNPs 的织物过程中,增加 AgNO3 浓度会增加织物上 AgNPs 的数量,而与所用织物无关。载有 AgNPs 的 loomstate-和丝光棉织物具有最高数量的 AgNPs,其具有较少聚集的球形形状;而与其漂白的对应物相反,AgNPs 由于聚集而呈现不规则形状和更大的尺寸。AgNPs 的形成通过监测紫外可见吸收峰来确认。结果还表明在棉织物表面形成了高密度的银涂层。负载 AgNPs 的织物表现出优异的抗菌活性。用蒸馏水对通过离心过滤的负载 AgNPs 的丝光棉织物进行处理,验证了 AgNPs 的缓慢释放,表明其具有极好的耐久性;这一点提倡在感染预防应用中使用这种织物。事实上,目前研究中的基本原理和实践可以强烈提名用于棉的更清洁的杀菌整理。