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Designing Yolk-Shell Nanostructures for Reversible Water-Vapor-Responsive Dual-Mode Switching of Fluorescence and Structural Color

机译:设计用于可逆水蒸气响应荧光和结构颜色双模式切换的蛋黄壳纳米结构

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Metal halide perovskites offer ample opportunities to develop advanced optoelectronic devices. This work showcases that the integration of metal halide perovskites into metal oxide nanoshells with controllable interior cavities can enable water-vapor-responsive dual-mode switching of fluorescence and structural color. Through a ship-in-a-bottle method to introduce a controlled amount of CsPbBr3 into MnO2 nanoshells, we have designed CsPbBr3@MnO2 yolk-shell nanostructures, which can uptake a defined amount of water to exhibit rapid (less than 1 s) and reversible (>= 100 cycles) responses in both fluorescence on-off and color change when exposed to dynamic water vapor. These responses originate from the water-triggered phase transformation of CsPbBr3 to CsPb2Br5 and the structural color change of the MnO2 shell. The altered electronic and bonding structure at the oxide-halide interface, rapid water accumulation in the yolk-shell cavity, and protective effect of the oxide shell facilitate the reversible transformations. The response characteristics of the yolk-shell nanostructures have been further demonstrated in fabricating patterned films capable of multiple fluorescence/structural color responses, highlighting their potential for applications in advanced anticounterfeiting and encryption.
机译:金属卤化物钙钛矿为开发先进的光电器件提供了充足的机会。这项工作表明,将金属卤化物钙钛矿整合到具有可控内部腔体的金属氧化物纳米壳中,可以实现荧光和结构颜色的水蒸气响应双模式切换。通过瓶中船方法将受控量的 CsPbBr3 引入 MnO2 纳米壳中,我们设计了CsPbBr3@MnO2蛋黄壳纳米结构,它可以吸收规定量的水,在暴露于动态水蒸气时在荧光开关和颜色变化中表现出快速(小于 1 秒)和可逆(>= 100 次循环)反应。这些响应源于 CsPbBr3 向 CsPb2Br5 的水触发相变以及 MnO2 壳的结构颜色变化。氧化物-卤化物界面处改变的电子和键合结构、卵黄壳腔中的快速积水以及氧化物壳的保护作用促进了可逆转变。蛋黄壳纳米结构的响应特性在制造能够进行多种荧光/结构颜色响应的图案化薄膜中得到了进一步证明,突出了它们在高级防伪和加密方面应用的潜力。

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