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首页> 外文期刊>Journal of cosmetic science >Protection of oxidative hair color fading from shampoo washing by hydrophobically modified cationic polymers
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Protection of oxidative hair color fading from shampoo washing by hydrophobically modified cationic polymers

机译:通过疏水改性的阳离子聚合物保护洗发剂免于氧化头发褪色

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摘要

The fading of oxidative color in hair as a result of daily shampoo washing activities has become a common problem and a source of frequent complaints by consumers. The fading occurs primarily through hair dye solubility in water. One aspect of the current study investigates the physical and chemical factors that influence haif color fading during the washing process. This is accomplished by testing hair dye dissolution in water from dyed hair samples with variation of surfactant type, pH, and hair type. Furthermore, a new approach to preventing color fading is developed aiming to provide an effective barrier function for hair dye from dissolving into water. The preliminary investigation of a series of polymers with various functional groups indicates that polymers with hydrophobically modified and cationic functionalities are most effective in preventing hair dye dissolution in water. It is also evident that a synergistic effect of the polymer's hydrophobic moieties and cationic charges are important on hair color protection during shampoo washing processes. A primary example of a polymer within this category is a cationic terpolymer of vinylpyrrolidone, dimethylaminopropyl merhacrylamide, and meth-acryloylaminopropyl lauryldimonium chloride (INCI: Polyquaternium-55). The color protection benefit of this polymer is evaluated using newly developed methodologies for evaluating hair color changes, such as hair color fading tests through multiple shampoo washes with mannequin heads and hair tresses, both derived from human hair, colorimetry, and quantitative digital image analysis. In addition, new infrared spectroscopic imaging techniques are used to detect the hair dye deposition behavior inside hair fibers both with and without the color protection treatment. Both visual and instrumental measurement results indicate that Polyquaternium-55 provides a high level of color protection when formulated in a hair color protection regimen with up to 50% color protection. This regimen significantly outperforms commercial products that were tested containing a color protection claim. The proposed mechanism for the anti-fading action of hydrophobically modified polymers includes a cationic chatge-reinforced hydrophobic barrier. This model is supported by evaluating the color fastness effect of several different polymer chemistries and by measuring hair surface hydrophobicity changes.
机译:日常洗发活动导致头发中的氧化色褪色已成为一个普遍的问题,也是消费者经常抱怨的来源。褪色主要是通过染发剂在水中的溶解度而发生的。当前研究的一个方面研究了在洗涤过程中影响透明色褪色的物理和化学因素。这是通过测试染发剂在染过的头发样本中的水中溶解度(表面活性剂类型,pH和染发类型的变化)来实现的。此外,开发了一种新的防止褪色的方法,旨在为染发剂提供有效的阻隔功能,使其不溶于水。对具有各种官能团的一系列聚合物的初步研究表明,具有疏水改性和阳离子官能团的聚合物最有效地防止染发剂溶于水。同样明显的是,聚合物的疏水部分和阳离子电荷的协同作用对于在洗发剂洗涤过程中保护头发的颜色很重要。这类聚合物的主要例子是乙烯基吡咯烷酮,二甲基氨基丙基甲基丙烯酰胺和甲基丙烯酰基氨基丙基十二烷基氯化铵的阳离子三元共聚物(INCI:Polyquaternium-55)。使用新开发的评估头发颜色变化的方法来评估这种聚合物的颜色保护优势,例如通过人体头部,比色法和定量数字图像分析得出的多种带有人体头部和发束的洗发水进行头发褪色测试。另外,新的红外光谱成像技术用于检测经过和不经过颜色保护处理的染发剂在头发纤维内部的沉积行为。视觉和仪器测量结果均表明,当在具有高达50%色彩保护的头发色彩保护方案中配制时,Polyquaternium-55可提供高水平的色彩保护。此方案明显优于包含颜色保护声明的经测试的商业产品。所提出的用于疏水改性的聚合物的抗褪色作用的机理包括阳离子聊天增强的疏水屏障。通过评估几种不同聚合物化学的色牢度效果并通过测量头发表面疏水性变化来支持该模型。

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  • 来源
    《Journal of cosmetic science 》 |2009年第2期| 217-238| 共22页
  • 作者单位

    International Specialty Products, 1361 Alps Road, Wayne, N.J. 07470;

    International Specialty Products, 1361 Alps Road, Wayne, N.J. 07470;

    International Specialty Products, 1361 Alps Road, Wayne, N.J. 07470;

    International Specialty Products, 1361 Alps Road, Wayne, N.J. 07470;

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