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A stimuli responsive material of perovskite quantum dots composited nano-porous glass

机译:钙钛矿量子点复合纳米多孔玻璃的刺激响应材料

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Stimuli responsive materials exhibit adaptive behaviors in a dynamic sense according to the conditions in their surrounding environment, which require that their surfaces or structures can be reconstructed. Luminescent CsPbX3 (X = Cl, Br, I) perovskite quantum dots (QDs) have aroused extensive attention in optoelectronic fields due to their outstanding properties, but they suffer poor resistance to polar solvents like water. Conversely, it would be of great interest if the perovskite QDs could switchably respond to the stimulus of water. In this research, the CsPbX3 QDs are composited into a transparent nano-porous glass (NPG) by a facile impregnation method. These bulk composite materials possess bright emissions, and are capable of switching colors upon successive stimuli of deionized water and nonaqueous solutions containing bromine ions. An in situ confocal microscope dynamically demonstrates the responsive behavior. Moreover, the bulk composite materials could still give a switched bluish emission even after a duration of several months in water. It is found that the residual chloride ions in the nanosized pores of NPG, which are introduced in the preparation of the blank NPG, play a significant role in stimuli responsive behaviors and long-term resistance to water. This research offers a perspective for fabricating stimuli responsive materials with the ion-exchangeable perovskite QDs.
机译:刺激响应材料根据周围环境中的条件表现出动态意义的自适应行为,这要求它们的表面或结构可以重建。发光CSPBX3(X = CL,BR,I)钙钛矿量子点(QDS)由于其优异的性能而引起光电领域的广泛关注,但它们耐受水的极性溶剂耐受差。相反,如果钙钛矿QDS可以切换地响应水刺激,那将是非常兴趣的。在该研究中,CSPBX3QD通过容易浸渍法赋予透明纳米多孔玻璃(NPG)。这些散装复合材料具有明亮的排放,并且能够在含有溴离子的去离子水和非水溶液的连续刺激时切换颜色。原位共聚焦显微镜动态展示了响应行为。此外,即使在水中数月的持续时间后,散装复合材料仍然可以给出切换的蓝色发射。结果发现,在坯料NPG的制备中引入的NPG中纳米型孔中的残留氯离子在刺激响应行为和对水的长期抗性中起着重要作用。本研究提供了用离子可交换的钙钛矿QD来制造刺激反应材料的视角。

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