Publication | Closed Access
Reversible Phase Transitions of all Inorganic Copper-Based Perovskites: Water-Triggered Fluorochromism for Advanced Anticounterfeiting Applications
29
Citations
43
References
2022
Year
Materials ScienceInorganic ChemistryCopper-based PerovskitesEngineeringWater-triggered FluorochromismPhotochemistryInorganic Copper-based PerovskitesPerovskite Solar CellPerovskite ModuleCondensed Matter PhysicsHalide PerovskitesChemistryReversible Phase TransitionsLead-free PerovskitesFunctional MaterialsLead ToxicityPhotochromismCs3cu2i5 Ink
Recently, several lead halide perovskites have been demonstrated as functional materials with hydrochromic, thermochromic, and photochromic properties for anticounterfeiting applications. However, their lead toxicity and relatively poor stability are still drawbacks for large-scale practical applications. In this work, we report the reversible water-triggered fluorochromism of the copper-based perovskites, which utilize the crystalline phase transition between Cs3Cu2I5 and CsCu2I3. The custom-designed images printed using the Cs3Cu2I5 ink are invisible under daylight but emit intense blue fluorescence under UV light. This fluorescence undergoes a blue-to-orange color change upon exposure to water, which can be recovered upon removing water. Furthermore, the fluorochromism of Cs3Cu2I5 is tunable to blue, blue-green, and cyan via anion-exchange reactions in various halide salt solutions. These multicolor- and multistimuli-responsive benefits make Cs3Cu2I5 a promising chromic material for high-level information security applications.
| Year | Citations | |
|---|---|---|
Page 1
Page 1