Cai Xiaoyu, Li Hong, Zhang Li, Yan Jun
Department of Textile and Material Engineering, Dalian Polytechnic University, Dalian 116034, China.
Polymers (Basel). 2021 Sep 26;13(19):3289. doi: 10.3390/polym13193289.
Cotton fabrics were dyed with the madder and compounds of citric acid (CA) and dicarboxylic acids [tartaric acid (TTA), malic acid (MLA), succinic acid (SUA)] as cross-linking agents and sodium hypophosphite (SHP) as the catalyst. The molecular structures and crystal structures of the dyed cotton fabrics were analyzed using Fourier-transform infrared spectroscopy (FTIR) and X-ray diffractometry (XRD), respectively. The results showed that the polycarboxylic acids esterified with the hydroxyl groups in the dye and cellulose, respectively, and the reaction mainly occurred in the amorphous region of the cotton fabric. Compared with the direct dyed cotton fabric, the surface color depth () values of the CA, CA+TTA, CA+MLA, CA+SUA cross-linked dyed cotton fabrics increased by approximately 160%, 190%, 240%, 270%, respectively. The CA+SUA cross-linked dyed cotton fabric achieved the biggest value due to the elimination of the negative effect by α-hydroxyl in TTA and MLA on esterification reaction, and the cross-linked dyed cotton fabrics had great levelness property. The washing and rubbing fastness of the cross-linked cotton fabrics were above four levels. The light resistance stability and the antibacterial property of the cross-linked dyed cotton fabrics was obviously improved. The sum of warp and weft wrinkle recovery angle (WRA) of the CA+SUA cross-linked dyed cotton fabric was 55° higher than that of raw cotton fabric, and its average UV transmittance for UVA was less than 5% and its UPF value was 50+, showing a great anti-wrinkle and anti-ultraviolet properties.
棉织物用茜草、柠檬酸(CA)和二元羧酸[酒石酸(TTA)、苹果酸(MLA)、琥珀酸(SUA)]作为交联剂以及次磷酸钠(SHP)作为催化剂进行染色。分别使用傅里叶变换红外光谱(FTIR)和X射线衍射仪(XRD)分析了染色棉织物的分子结构和晶体结构。结果表明,多元羧酸分别与染料和纤维素中的羟基发生酯化反应,且反应主要发生在棉织物的无定形区域。与直接染色棉织物相比,CA、CA+TTA、CA+MLA、CA+SUA交联染色棉织物的表面色深()值分别提高了约160%、190%、240%、270%。CA+SUA交联染色棉织物由于消除了TTA和MLA中α-羟基对酯化反应的负面影响而获得了最大的 值,且交联染色棉织物具有良好的匀染性。交联棉织物的水洗和摩擦牢度均在四级以上。交联染色棉织物的耐光稳定性和抗菌性能明显提高。CA+SUA交联染色棉织物的经纬向折皱回复角(WRA)之和比原棉织物高55°,其对UVA的平均紫外线透过率小于5%,UPF值为50+,具有良好的抗皱和抗紫外线性能。