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How the sun protection factor (SPF) of sunscreen films change during solar irradiation

机译:太阳照射期间防晒膜的防晒系数(SPF)如何变化

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We have investigated how the sun protection factor (SPF) of different types of sunscreen film varies with "standard" solar irradiation due to photochemical processes. We have used a combination of chemical actinometry, measurement and modelling to estimate the overall quantum yields for the photoprocesses occurring for avobenzone (AVB) and isopentylp-methoxycinnamate (MC) in either propane-1,2-diol (PG) or squalane (SQ) as solvent. Using the obtained parameters, we have developed models to calculate the evolution of the film spectra and derived SPF values for both non-scattering sunscreen films consisting of solutions of multiple UV filters and for highly scattering Pickering emulsion based sunscreen films. Model calculations for all films are in excellent agreement with film spectra measured as a function of irradiation time using different laboratory light sources. Finally, using the estimated parameters and experimentally validated models, we are able to quantitatively predict how the in vitro SPF values for different film types containing any set combination of UV filter concentrations will vary with time due to photochemical processes induced by irradiation with "standard" sunlight. This provides a useful tool for the rational design and optimisation of new sunscreen formulations. (C) 2016 Elsevier B.V. All rights reserved.
机译:我们研究了不同类型的防晒膜的防晒系数(SPF)如何随着光化学过程而因“标准”太阳辐射而变化。我们使用了化学辐射测定法,测量和建模的组合,以估计用于百合(AVB)和异戊砜(PG)或Squalane(SQ )作为溶剂。使用所获得的参数,我们已经开发了模型,以计算薄膜光谱和衍生的SPF值,用于包括多个UV过滤器的溶液以及用于高度散射的乳液基乳液膜的非散射防晒膜。所有胶片的模型计算与使用不同实验室光源的照射时间的函数测量的薄膜光谱的良好协议。最后,使用估计的参数和实验验证的模型,我们能够定量地预测不同膜类型的体外SPF值,其中包含UV过滤器浓度的任何组合组合的不同薄膜类型将随着通过用“标准”而引起的光化学过程而变化。阳光。这为新的防晒配方的合理设计和优化提供了一种有用的工具。 (c)2016年Elsevier B.v.保留所有权利。

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