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- W4285178086 abstract "The recent research progress in the area of nanoscience and photocatalysis technology has attracted considerable interest in cosmetic and personal care enterprises, a market that had been expected to experience a growth of USD 429.8 billion by 2022. In the class of nanomaterials used in cosmetics and beauty care products, metal oxides (MOs) are of particular importance due to their widespread features that can bring about concomitant changes to the traditional systems. The optoelectronic and photonic properties of MO nanoparticles (MONPs) are intrinsically explored for the development of cosmetic products, which can be projected to drive the market to reach USD 9.48 billion by 2025, at a CAGR (compound average growth rate) of 9.5%. MONPs are also projected to contribute to the global photocatalyst market, estimated to reach USD 4.58 billion by 2025 and USD 5.23 billion by the year 2027. With these merit of business expectations, it is, however, pertinent that MONPs employed in cosmetics and beauty products should be free from both inbuilt toxicity and uneven performance, considering the fact that NPs are not entirely safe, mainly rooted in the unintended and often negative side effects stemming from their biochemical interactions and varying physicochemical properties. Therefore, this chapter has tried to narrow its discussion to cover the recent innovative information about MONPs, starting from their fundamental properties and linking them with cosmetic-related applications, mechanisms involved, etc. Based on the construction strategies of functional nanomaterials, this book chapter further discusses the emerging MONP-based functional nanomaterials and their integrative photocatalytic sunscreen properties by focusing on their preparation, unique properties, and performances in addition to their physicochemical properties. Finally, the perspectives and current challenges of MONPs in future functional materials are further outlined with a view to gain a fundamental understanding of MO chemistry and biological interactions to underpin the use of MOs as next-generation nanoparticles for developing sustainable, reusable, nontoxic products and photocatalysts." @default.
- W4285178086 created "2022-07-14" @default.
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- W4285178086 date "2022-01-01" @default.
- W4285178086 modified "2023-09-29" @default.
- W4285178086 title "Metal oxide-involved photocatalytic technology in cosmetics and beauty products" @default.
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