浓缩磷酸处理氧化锌合成新型化妆品白色颜料

IF 0.6 4区 材料科学 Q4 MATERIALS SCIENCE, CERAMICS
H. Onoda
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引用次数: 1

摘要

氧化锌在化妆品中用作白色颜料,但缺点是具有光催化活性。由于这种化妆品的光催化活性,皮肤上一定数量的皮脂被阳光中的紫外线分解,对皮肤造成伤害。本研究通过将氧化锌与各种浓缩磷酸溶液或浓缩磷酸的混合物摇匀,使氧化锌表面与磷酸盐发生反应,制备了一种新型化妆品用白色颜料。考察了所得粉末材料的化学成分、粒径分布、光催化活性、色相和光洁度。浓缩磷酸处理使部分氧化锌与磷酸锌发生反应。在质子化溶液中制备的样品中,反应相对较早。大多数样品粉末的尺寸适合于化妆品的白色颜料。浓缩磷酸处理抑制了氧化锌的光催化活性。所得样品在可见光范围内具有足够高的反射率。从粒径和光催化活性来看,用多磷酸制备的样品最适合作为化妆品的白色颜料。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
SYNTHESIS OF NOVEL COSMETIC WHITE PIGMENT BY CONDENSED PHOSPHORIC ACID TREATMENT OF ZINC OXIDE
Zinc oxide is used as a white pigment in cosmetics, but has the disadvantage of having photocatalytic activity. A certain amount of sebum on the skin is decomposed by ultraviolet rays in sunlight due to the photocatalytic activity of this cosmetic, causing damage to the skin. In this study, a new white pigment for cosmetics was prepared by shaking a mixture of zinc oxide and various condensed phosphate solutions or condensed phosphoric acid to react the surface of zinc oxide to phosphate. The chemical composition, particle size distribution, photocatalytic activity, hue, and smoothness of the resulting powder materials were examined. The condensed phosphoric acid treatment caused some of the zinc oxide to react with the zinc phosphate. The reaction was relatively advanced in the samples prepared in a protonated solution. Most of the sample powders were of a size suitable for white pigments for cosmetics. The condensed phosphoric acid treatment suppressed the photocatalytic activity of the zinc oxide. The obtained samples had sufficiently high reflectance in the visible light range. Judging from the particle size and the photocatalytic activity, the sample prepared with polyphosphoric acid is most suitable as a white pigment for cosmetics.
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来源期刊
Ceramics-silikaty
Ceramics-silikaty 工程技术-材料科学:硅酸盐
CiteScore
1.40
自引率
11.10%
发文量
49
审稿时长
5.5 months
期刊介绍: The journal Ceramics-Silikáty accepts papers concerned with the following ranges of material science: Chemistry and physics of ceramics and glasses Theoretical principles of their engineering including computing methods Advanced technologies in the production of starting materials, glasses and ceramics Properties and applications of modern materials Special analytical procedures Engineering ceramic including composites Glass and ceramics for electronics and optoelectronics High temperature superconducting materials Materials based on cement or other inorganic binders Materials for biological application Advanced inorganic glasses with special properties Fibrous materials Coatings and films based on inorganic non-metallic materials.
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