Martin Cassandra L, Flynn Kaitlyn R, Kim Taehwan, Nikolic Skyler K, Deravi Leila F, Wilson Daniel J
Kostas Research Institute at Northeastern University, Burlington, MA, 01803, USA.
Department of Chemistry and Chemical Biology, Northeastern University, Boston, MA, 02115, USA.
Adv Sci (Weinh). 2023 Nov;10(32):e2302652. doi: 10.1002/advs.202302652. Epub 2023 Oct 3.
Modern paints and coatings are designed for a variety of applications, ranging from fine art to extraterrestrial thermal control. These systems can be engineered to provide lasting color, but there are a limited number of materials that can undergo transient changes in their visual appearance in response to external stimuli without requirements for advanced fabrication strategies. The authors describe color-changing paint formulations that leverage the redox-dependent absorption profile of xanthommatin, a small-molecule colorant found throughout biology, and the electronic properties of titanium dioxide, a ubiquitous whitening agent in commercial coatings. This combination yields reversible photoreduction upon exposure to sunlight, shifting from the oxidized (yellow) form of xanthommatin, to the reduced (red) state. The extent of photoreduction is dependent on the loading density and size of titanium dioxide particles, generating changes in hue angle as large as 77% upon irradiation. These coatings can be blended with non-responsive supplemental colorants to expand the accessible color palette, and irradiated through masks to create transient, disappearing artwork. These formulations demonstrate energy-efficient photochromism using a simple combination of a redox-active dye and metal oxide semiconductor, highlighting the utility of these materials for the development of optically dynamic light-harvesting materials.
现代涂料和涂层适用于各种应用,从美术到外星热控制。这些系统可以设计成提供持久的颜色,但只有有限数量的材料能够在无需先进制造策略的情况下,响应外部刺激而在视觉外观上发生瞬态变化。作者描述了变色涂料配方,该配方利用了黄蝶呤(一种在整个生物界都存在的小分子着色剂)的氧化还原依赖性吸收特性,以及二氧化钛(商业涂料中普遍使用的增白剂)的电子特性。这种组合在暴露于阳光下时会产生可逆的光还原反应,从黄蝶呤的氧化(黄色)形式转变为还原(红色)状态。光还原的程度取决于二氧化钛颗粒的负载密度和尺寸,照射后色相角变化高达77%。这些涂层可以与无响应的补充着色剂混合,以扩大可获得的调色板,并通过掩膜照射以创建瞬态的、会消失的艺术品。这些配方使用氧化还原活性染料和金属氧化物半导体的简单组合展示了节能光致变色现象,突出了这些材料在开发光学动态光捕获材料方面的实用性。