Chemistry Department, Faculty of Science, Helwan University, Ain-Helwan, Cairo 11795, Egypt.
Department of Pretreatment and Finishing of Cellulosic Fibers, Textile Research Division, National Research Centre, Scopus Affiliation ID 60014618, 33 EL Buhouth St., Dokki, Giza 12622, Egypt.
Carbohydr Polym. 2018 Apr 15;186:310-320. doi: 10.1016/j.carbpol.2018.01.074.
The current approach focuses on studying the leverage of nanosilver (AgNPs) incorporation on the dyeing process of viscose fibers by blue reactive dye. Nanosilver was straightway incorporated into viscose fibers using sodium citrate as nanogenerator. Owing to AgNPs incorporation, color of fibers was turned to greenish-blue and darker greenish color was observed with low Ag content (<1 g/kg). Regardless to the processes sequencing, color strength of fibers was magnified by increasing in Ag content. The constancy of fibers color was not affected by AgNPs inclusion, whatever the processes sequencing and Ag content. Release property of Ag from fibers into water was considerably depended on the processes sequencing. By incorporation of AgNPs firstly, the lowest Ag release value was estimated (0.25 g/kg after 24 h). Antimicrobial activities were significantly improved by AgNPs incorporation. Reduction in bacteria and fungi was reached 92.4% and 67.9% after 24 h contact time, respectively.
目前的方法侧重于研究纳米银(AgNPs)对粘胶纤维用蓝色活性染料染色过程的影响。通过使用柠檬酸钠作为纳米发生器,将纳米银直接掺入粘胶纤维中。由于 AgNPs 的掺入,纤维的颜色变为蓝绿色,并且在低 Ag 含量(<1 g/kg)下观察到更深的绿色。无论 Ag 含量如何,增加 Ag 含量都会使纤维的颜色强度增大。无论加工顺序如何,纤维颜色的稳定性都不受 AgNPs 包含的影响。通过首先掺入 AgNPs,可以估计出 Ag 的最低释放值(24 小时后为 0.25 g/kg)。掺入 AgNPs 可显著提高抗菌性能。接触 24 小时后,细菌和真菌的减少量分别达到 92.4%和 67.9%。