Al-Etaibi Alya M, El-Apasery Morsy Ahmed
Natural Science Department, College of Health Science, Public Authority for Applied Education and Training, Fayha 72853, Kuwait.
Dyeing, Printing and Textile Auxiliaries Department, Textile Research and Technology Institute, National Research Centre, 33 El Buhouth St., Dokki, Cairo 12622, Egypt.
Polymers (Basel). 2022 Sep 22;14(19):3966. doi: 10.3390/polym14193966.
Original work showed the composition of the dyes and the antimicrobial/UV protective properties of a series of dyes obtained in our laboratories over the past twelve years in an easy way using microwave technology and their comparisons with conventional methods. The results we obtained clearly indicated that by using the microwave strategy, we were able to synthesize the new disperse dyes in minutes and with a much higher productivity when compared to the traditional methods, which took a much longer time, sometimes up to hours. We also introduced ultrasonic technology in dyeing polyester fabrics at 80 °C for an environmentally friendly approach, which was an alternative to traditional dyeing methods at 100 °C; we obtained a much higher color depth than traditional dyeing methods reaching 102.9%. We presented both the biological activity of the prepared new dyes and the fastness properties and clearly indicated that these dyes possess biological activity and high fastness properties.We presented through the results that when dyeing polyester fabrics with some selected disperse dyes, the color strength of polyester fabrics dyed at high temperatures was greater than the color strength of polyester fabrics dyed at low temperatures by 144%, 186%, 265% and 309%. Finally, we presented that a ZnO or TiO NPs post-dyeing treatment of polyester fabrics is promising strategy for producing polyester fabrics possess multifunction like self-cleaning property, high light fastness, antimicrobial and anti-ultraviolet properties.
原始研究展示了染料的成分以及过去十二年间我们实验室通过微波技术简便获得的一系列染料的抗菌/紫外线防护性能,还展示了它们与传统方法的比较。我们获得的结果清楚地表明,与耗时更长、有时长达数小时的传统方法相比,采用微波策略能够在数分钟内合成新型分散染料,且生产率更高。我们还引入了超声波技术,在80°C下对聚酯织物进行染色,这是一种环保方法,可替代100°C的传统染色方法;我们获得的色深比传统染色方法高得多,达到了102.9%。我们展示了所制备的新型染料的生物活性和色牢度性能,并清楚地表明这些染料具有生物活性和高色牢度性能。我们通过结果表明,用某些选定的分散染料对聚酯织物染色时,高温染色的聚酯织物的色强度比低温染色的聚酯织物的色强度分别高144%、186%、265%和309%。最后,我们表明对聚酯织物进行氧化锌或二氧化钛纳米颗粒后染色处理是一种有前景的策略,可生产具有自清洁性能、高耐光性、抗菌和抗紫外线等多功能的聚酯织物。