Fahmy H M, Amr A
Textile Research and Technology Institute, National Research Centre, Dokki, 12622, Giza, Egypt.
Sci Rep. 2024 Mar 26;14(1):7208. doi: 10.1038/s41598-024-56917-2.
New castor oil/polyethylene glycol (CAO/PEG) hybrids were synthesized by reacting of CAO with PEG 300, 600, 1000, 2000 or 4000, in presence of ammonium per sulfate (APS) as an initiator. The optimum conditions to synthesis such hybrids are: PEG/CAO weight ratio, 35%; APS/PEG weight ratio, 15%; reaction temperature, 80 °C; and reaction time, 60 min. Only the hybrids based on PEG 1000 and 2000 formed oil in water stable emulsions. Treating cotton fabric samples with easy care finishing formulation containing 40 g/L of the synthesized hybrids emulsions results in an enhancement in softness, tensile strength, whiteness index, and stiffness along with a reduction in nitrogen content, wrinkle recovery angle, and wettability properties of treated fabric, compared to that sample finished in absence of that emulsions. The chemical structure of the synthesized CAO/PEG1000 hybrid was confirmed via the FTIR and HNMRanalysis whereas the TEM analysis showed that the particles size of that hybrid emulsion is in the range of 27-105 nm. Moreover, such hybrid emulsion treated fabric surface was characterized via SEM and EDX analysis. Furthermore, treating dyed samples with the nominated hybrid emulsion improves the color strength of that samples but keeps the washing fastness, wet rubbing fastness as well as alkaline perspiration fastness of the dyed/finished samples unchanged. The wet rubbing fastness and alkaline perspiration fastness of all the dyed/finished samples were enhanced while the light fastness of such samples decreased.
通过蓖麻油(CAO)与聚乙二醇(PEG)300、600、1000、2000或4000在过硫酸铵(APS)作为引发剂的存在下反应,合成了新型蓖麻油/聚乙二醇(CAO/PEG)杂化物。合成此类杂化物的最佳条件为:PEG/CAO重量比35%;APS/PEG重量比15%;反应温度80℃;反应时间60分钟。只有基于PEG 1000和2000的杂化物形成了水包油稳定乳液。与未用该乳液整理的样品相比,用含有40 g/L合成杂化物乳液的免烫整理配方处理棉织物样品,可提高其柔软度、拉伸强度、白度指数和挺度,同时降低处理后织物的含氮量、折皱回复角和润湿性。通过傅里叶变换红外光谱(FTIR)和核磁共振氢谱(HNMR)分析证实了合成的CAO/PEG1000杂化物的化学结构,而透射电子显微镜(TEM)分析表明该杂化物乳液的粒径在27-105纳米范围内。此外,通过扫描电子显微镜(SEM)和能谱分析(EDX)对该杂化物乳液处理过的织物表面进行了表征。此外,用指定的杂化物乳液处理染色样品可提高样品的色深,但染色/整理样品的水洗牢度、湿摩擦牢度以及耐碱性汗渍牢度保持不变。所有染色/整理样品的湿摩擦牢度和耐碱性汗渍牢度均有所提高,而此类样品的耐光牢度下降。