A Transparent Additive‐Free Fibrous Facial Mask for Skin Moisturizing

Author:

Fan Xiaoyan12,Bai Xue12,Tan Langqun12,Fang Cheng12,Shen Xinlei12,Xu Haijuan12,Wang Yuanduo12,Ma Yulong12,Li Yuewen12,Song Xinyi12,Hu Jiang12,Lu Yuhan12,Wei Xinfang12,Zhang Junxin3,Li Fengguang3,Zhu Zhenghui3,Duan Shuxia4,Zhou Yongheng4,Wu Haibo12,Liu Wanjun12345ORCID

Affiliation:

1. Key Laboratory of Textile Science & Technology Ministry of Education, College of Textiles, Donghua University Shanghai 201620 China

2. Engineering Research Center of Technical Textiles Ministry of Education, College of Textiles, Donghua University Shanghai 201620 China

3. Henan Institute for Drug and Medical Device Inspection Zhengzhou 450018 China

4. Henan Key Laboratory of Medical and Protective Products Henan Yadu Industry Co., Ltd. Xinxiang 453000 China

5. Shanghai Engineering Research Center of Nano‐Biomaterials and Regenerative Medicine Donghua University Shanghai 201620 China

Abstract

AbstractMost sheet facial masks for skincare are made of nonwovens and loaded with liquid active ingredients, which are usually opaque and require additives for long‐term preservation. Herein, a Transparent Additive‐Free Fibrous (TAFF) facial mask is reported for skin moisturizing. The TAFF facial mask consists of a bilayer fibrous membrane. The inner layer is fabricated by electrospinning functional components of gelatin (GE) and hyaluronic acid (HA) into a solid fibrous membrane to get rid of additives, the outer layer is an ultrathin PA6 fibrous membrane that is highly transparent, especially after absorbing water. The results indicate that the GE‐HA membrane can quickly absorb water and become a transparent hydrogel film. By employing the hydrophobic PA6 membrane as the outer layer, directional water transport is achieved, which enables TAFF facial mask with excellent skin moisturizing effect. The skin moisture content is up to 84% ± 7% after placing the TAFF facial mask on the skin for 10 min. In addition, the relative transparency of the TAFF facial mask on the skin reaches 97.0% ± 1.9% when ultrathin PA6 membrane is used as the outer layer. The design of the transparent additive‐free facial mask may serve as a guideline for developing new functional facial masks.

Funder

National Natural Science Foundation of China

Fundamental Research Funds for the Central Universities

Publisher

Wiley

Subject

Materials Chemistry,Polymers and Plastics,Organic Chemistry

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