论文标题

防晒霜的光学:散射和吸收系数的初步结果

Optics of sunscreen lotions: Preliminary results on scattering and absorption coefficients

论文作者

Niklasson, Gunnar A., Niklasson, Sara L., Notfors, Celina, Wang, Junxin, Stromme, Maria, Arhammar, Cecilia

论文摘要

防晒霜用于保护皮肤免受太阳能紫外线(UV)辐射的损害。活性的紫外线阻滞成分可以是有机分子或无机颗粒,例如TiO2。尽管存在体内和体外方法用于评估防晒霜的保护能力,但它们的基本光学特性很少受到关注。在本文中,我们采取了第一步来解决此问题,通过提出一种通过分析实验性透射率和反射光谱来获得防晒霜的吸收光谱和散射系数的方法。我们通过两个通量理论对防晒霜的光学特性进行建模,开发界面反射系数的近似表达式,并通过将两频型理论拟合到测量中获得剩余的光学参数。我们根据碳酸镁和TiO2的混合物以及一些商业防晒霜分析了实验窄带UV阻断材料的分光光度反射率和透射光谱。使用石英底物在体外证明了我们的方法,并进一步用于模拟一位作者手的上空的体内测量。获得的吸收和散射系数光谱提供了有关这些过程对紫外线阻塞效果的相对贡献的信息,以及在应用防晒霜时,可见光的散射,负责使皮肤增白的可见光。我们的分析方法可能对新型防晒霜的计算优化以及体内测试方法的开发很有用。

Sunscreen lotions are used to protect the skin from damage due to solar ultraviolet (UV) radiation. The active UV blocking components can be organic molecules or inorganic particles, for example TiO2. While both in vivo and in vitro methods exist for assessing the protective capacity of sunscreens, their basic optical properties have received little attention. In this paper we take the first steps to address this issue by presenting a method to obtain spectra of absorption and scattering coefficients of a sunscreen by analysis of experimental transmittance and reflectance spectra. We model the optical properties of the sunscreen by two flux theory, develop approximate expressions for interface reflection coefficients and obtain the remaining optical parameters by fitting the two-flux theory to measurements. We analyze spectrophotometric reflectance and transmittance spectra of experimental narrow band UV blocking materials based on mixtures of mesoporous magnesium carbonate and TiO2, as well as some commercial sunscreens. Our method is demonstrated in vitro using quartz substrates and is further used to model in vivo measurements on the upside of the hand of one of the authors. The obtained absorption and scattering coefficient spectra give information on the relative contributions of these processes to the UV blocking effect as well as the scattering of visible light responsible for the whitening of the skin upon application of a sunscreen lotion. Our analysis method may be useful for computational optimization of novel sunscreen formulations as well as for the development of in vivo test methods.

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