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化妆品基材、洁面活性剂及制剂的表面科学。

Surface science of cosmetic substrates, cleansing actives and formulations.

机构信息

L'Oréal Research and Innovation, Aulnay-sous-Bois, France.

L'Oréal Research and Innovation, Clichy, France.

出版信息

Adv Colloid Interface Sci. 2021 Apr;290:102383. doi: 10.1016/j.cis.2021.102383. Epub 2021 Feb 18.

Abstract

The development of shampoo and cleansing formulations in cosmetics is at a crossroads due to consumer demands for better performing, more natural products and also the strong commitment of cosmetic companies to improve the sustainability of cosmetic products. In order to go beyond traditional formulations, it is of great importance to clearly establish the science behind cleansing technologies and appreciate the specificity of cleansing biological surfaces such as hair and skin. In this review, we present recent advances in our knowledge of the physicochemical properties of the hair surface from both an experimental and a theoretical point of view. We discuss the opportunities and challenges that newer, sustainable formulations bring compared to petroleum-based ingredients. The inevitable evolution towards more bio-based, eco-friendly ingredients and sustainable formulations requires a complete rethink of many well-known physicochemical principles. The pivotal role of digital sciences and modelling in the understanding and conception of new ingredients and formulations is discussed. We describe recent numerical approaches that take into account the specificities of the hair surface in terms of structuration, different methods that study the adsorption of formulation ingredients and finally the success of new data-driven approaches. We conclude with practical examples on current formulation efforts incorporating bio-surfactants, controlling foaming and searching for new rheological properties.

摘要

由于消费者对性能更好、更天然产品的需求,以及化妆品公司对提高化妆品可持续性的强烈承诺,洗发水和清洁制剂的开发在化妆品领域正处于十字路口。为了超越传统配方,清楚地确立清洁技术背后的科学,并了解头发和皮肤等清洁生物表面的特殊性非常重要。在这篇综述中,我们从实验和理论两个方面介绍了我们对头发表面物理化学性质的最新认识。我们讨论了与基于石油的成分相比,更新的、可持续的配方带来的机遇和挑战。朝着更基于生物、更环保的成分和可持续配方的不可避免的演变,需要对许多众所周知的物理化学原理进行全面的重新思考。数字科学和建模在理解和构思新成分和配方方面的关键作用也进行了讨论。我们描述了最近的数值方法,这些方法考虑了头发表面在结构化方面的特殊性、研究配方成分吸附的不同方法,以及新的基于数据的方法的成功。最后,我们以当前包含生物表面活性剂、控制泡沫和寻找新流变特性的配方工作的实际示例作为结束。

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