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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Structural Properties and Antibacterial Effects of Hydrophobic and Oleophobic Sol-Gel Coatings for Cotton Fabrics
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Structural Properties and Antibacterial Effects of Hydrophobic and Oleophobic Sol-Gel Coatings for Cotton Fabrics

机译:疏水和疏油溶胶-凝胶涂层的棉织物的结构性能和抗菌作用

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摘要

In a Continuation of previous Studies, the wetting properties of the hydrophobic diureapropyltriethoxysilane [his (aminopropyl)-terminated polydimethylsiloxane (1000)] (PDMSU) sol-gel hybrid, which forms washing-resistant water-repellent finishes on cotton fabrics, were further investigated. The addition of 1H, 1H, 2H, 2H-perfluorooctyl-triethoxysilane (PFOTES) to PDMSU resulted in a highly apolar low-energy surface on aluminum with gamma(total)(S) equal to 14.5 mJ/m(2) and a Delta G(iwi) value of -82 mJ/m(2). Mixed PFOTES-PDMSU finishes applied oil cotton fabrics increased the water contact angles (theta(w)) from similar to 130 degrees (PDMSU) to 147 degrees, also imparting oleophobicity (theta(diiodomethane) = 130 degrees, theta(n-hexadecane) = 120 degrees) to the finished cotton fabrics. Washing caused breakage of the coating's integrity as established from SEM, which was attributed to the partial removal of PFOTES from the composite Films, also shown by subtractive IR attenuated total reflectance (ATR) and XPS spectral measurements made oil washed and unwashed fabrics. The antibacterial properties of the PFOTES-PDMSU-finished fabrics were assessed with the transfer method (EN ISO 20743:2007), revealing that the reduction of Escherichia coli bacteria oil unwashed cotton fabrics was nearly 100%. Moreover, for washed (10 times)cotton fabrics a much higher bacterial reduction was noted for the PFOTES-PDMSU Finishes (60.6 +/- 10.8%), surpassing PDMSU (30.4 +/- 6.1%) and commercial fluoroalkoxysilane (FAS) (21.9 +/- 5.7%) finishes. The structure of PFOTES-PDMSU gels, xerogels, and the corresponding coatings was investigated by analyzing the Si-29 NMR and IR ATR spectra and comparing them with the spectra of PFOTES and octameric (T-8) PFOTES based polyhedra. The results revealed the tendency of PFOTES to condense in octameric silsesquioxane polyhedra (T-8), coexisting in the PDMSU sol-gel network with cyclic tetramers (T-4(OH)(4)) and Open cube-like species (T-7(OH)(3)). The presence of -OH-functionalized PFOTES silsesquioxanes, established even in coatings heat-treated at 140 degrees C (15 min), also explained the excellent washing fastness of PFOTES finishes oil cotton fabrics. The regenerative nature of the water- and oil-repellent properties of washed PFOTES-PDMSU-finished cotton fabrics was attributed to the surface mobility of the T-8 PFOTES based polyhedra, ousted from the coating interior during consecutive washings.
机译:在先前研究的延续中,进一步研究了疏水性二脲丙基三乙氧基硅烷[其(氨基丙基)末端的聚二甲基硅氧烷(1000)](PDMSU)溶胶-凝胶杂化材料的润湿性能,该杂化材料在棉织物上形成了耐洗涤的拒水整理剂。 。在PDMSU中添加1H,1H,2H,2H-全氟辛基三乙氧基硅烷(PFOTES)会导致铝上的高非极性低能表面,其γ(总)(S)等于14.5 mJ / m(2),并且Delta G(iwi)值为-82 mJ / m(2)。混合的PFOTES-PDMSU涂油棉织物后整理剂将水接触角(theta(w))从大约130度(PDMSU)增加到147度,还赋予疏油性(theta(diiodomethane)= 130度,theta(n-十六烷) = 120度)到棉织物成品。洗涤导致涂层完整性的破坏,这是由SEM确定的,这归因于从复合薄膜中部分去除了PFOTES,这还通过红外衰减全反射率(ATR)和XPS光谱测量得出,这表明油洗和未洗的织物。用转移方法(EN ISO 20743:2007)评估了PFOTES-PDMSU整理的织物的抗菌性能,表明未经洗涤的棉织物对大肠杆菌细菌油的减少率接近100%。此外,对于水洗(10倍)的棉织物,PFOTES-PDMSU整理剂的细菌减少率更高(60.6 +/- 10.8%),超过PDMSU(30.4 +/- 6.1%)和市售的氟烷氧基硅烷(FAS)(21.9) +/- 5.7%)完成。通过分析Si-29 NMR和IR ATR光谱并将其与PFOTES和基于八聚(T-8)PFOTES的多面体的光谱进行比较,研究了PFOTES-PDMSU凝胶,干凝胶和相应涂层的结构。结果表明,PFOTES倾向于在八聚倍半硅氧烷多面体(T-8)中冷凝,并与环状四聚体(T-4(OH)(4))和开放立方体状物种(T- 7(OH)(3))。 -OH-官能化的PFOTES倍半硅氧烷的存在,甚至在140℃(15分钟)下进行了热处理的涂料中也能确定,这也解释了PFOTES整理油棉织物的优异耐洗牢度。洗涤过的PFOTES-PDMSU整理的棉织物的拒水拒油性能的再生特性归因于T-8 PFOTES基多面体的表面迁移率,该表面迁移率在连续洗涤过程中从涂层内部被逐出。

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