School of Materials Science and Engineering, Nanjing University of Science and Technology, 210094, Nanjing, Jiangsu, China.
School of Science, Xi'an University of Posts and Communications, 710121, Xi'an, China.
Nat Commun. 2020 Mar 12;11(1):1328. doi: 10.1038/s41467-020-15015-3.
The increasing demand for a whiter smile has resulted in an increased popularity for tooth whitening procedures. The most classic hydrogen peroxide-based whitening agents are effective, but can lead to enamel demineralization, gingival irritation, or cytotoxicity. Furthermore, these techniques are excessively time-consuming. Here, we report a nondestructive, harmless and convenient tooth whitening strategy based on a piezo-catalysis effect realized by replacement of abrasives traditionally used in toothpaste with piezoelectric particles. Degradation of organic dyes via piezo-catalysis of BaTiO (BTO) nanoparticles was performed under ultrasonic vibration to simulate daily tooth brushing. Teeth stained with black tea, blueberry juice, wine or a combination thereof can be notably whitened by the poled BTO turbid liquid after vibration for 3 h. A similar treatment using unpoled or cubic BTO show negligible tooth whitening effect. Furthermore, the BTO nanoparticle-based piezo-catalysis tooth whitening procedure exhibits remarkably less damage to both enamel and biological cells.
对更白笑容的需求不断增加,导致牙齿美白程序越来越受欢迎。最经典的基于过氧化氢的美白剂效果显著,但可能导致牙釉质脱矿、牙龈刺激或细胞毒性。此外,这些技术过于耗时。在这里,我们报告了一种基于压电催化效应的非破坏性、无害且方便的牙齿美白策略,该策略通过用压电颗粒替代传统牙膏中的磨料来实现。通过超声振动对 BaTiO(BTO)纳米粒子进行压电催化,实现了有机染料的降解,模拟了日常刷牙。经过 3 小时的振动,用极化 BTO 浑浊液处理后,可显著美白用红茶、蓝莓汁、葡萄酒或其组合染色的牙齿。使用未极化或立方 BTO 进行类似处理几乎没有牙齿美白效果。此外,基于 BTO 纳米粒子的压电催化牙齿美白程序对牙釉质和生物细胞的损伤明显较小。