Department of Applied Chemistry, College of Life Sciences, Ritsumeikan University, Kusatsu, Shiga, 525-8577, Japan.
Department of Applied Chemistry, Kobe City College of Technology, Kobe, 651-2194, Japan.
Photochem Photobiol Sci. 2022 Oct;21(10):1781-1791. doi: 10.1007/s43630-022-00256-6. Epub 2022 Jul 1.
Zinc oxide (ZnO) nanocrystals (NCs) exhibit photochromic reactions under specific conditions upon ultraviolet light irradiation. Since the color is originated from the excited electrons at the conduction band of ZnO NCs, the photoinduced absorption is observed only in the solution with hole acceptors under inert conditions. ZnO is earth-abundant and less toxic than many other substances, and has been widely used in various industrial fields. If the photochromic reaction of ZnO can be observed consistently under ambient conditions, the material may pave the way for large-scale photochromic applications such as in pigments, windows, and building materials in addition to conventional photochromic applications. In this study, we synthesize hydrophilic ZnO NCs and observe the solid-state photochromic reactions in the visible to mid-infrared regions even in humid-air conditions. We reveal that the coloration of powders of ZnO NCs under ambient conditions originates mainly from two factors: (1) charge separation induced by hole trapping by water molecules adsorbed on the surface of NCs, and (2) deceleration of the reactions involving the electrons in the conduction band of ZnO NCs with molecular oxygen and the adsorbed water molecules.
氧化锌 (ZnO) 纳米晶体 (NCs) 在特定条件下受到紫外光照射会发生光致变色反应。由于颜色源自 ZnO NCs 导带中的激发电子,因此只有在惰性条件下存在空穴受体的溶液中才能观察到光致吸收。ZnO 在地壳中含量丰富,毒性比许多其他物质低,已被广泛应用于各种工业领域。如果 ZnO 的光致变色反应能在环境条件下持续观察到,该材料可能为大规模光致变色应用铺平道路,例如在颜料、窗户和建筑材料中的应用,除了传统的光致变色应用之外。在这项研究中,我们合成了亲水性 ZnO NCs,并在可见到中红外区域观察到其在固态下的光致变色反应,即使在潮湿空气条件下也是如此。我们揭示了在环境条件下 ZnO NCs 粉末的着色主要源于两个因素:(1) 表面吸附的水分子捕获空穴引起的电荷分离,(2) 与 ZnO NCs 导带中的电子以及吸附的水分子有关的反应的减速。