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Assembly of luminescent ordered multilayer thin-films based on oppositely-charged MMT and magnetic NiFe-LDHs nanosheets with ultra-long lifetimes

机译:基于带相反电荷的MMT和磁性NiFe-LDHs纳米片的超长寿命发光有序多层薄膜的组装

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摘要

In this present report, luminescent ordered multilayer thin films (OMFs) based on oppositely-charged inorganic nanosheets and the different oppositely-charged chromophores were fabricated via layer-by-layer assembly method. Exfoliated layered double hydroxides (LDHs) and montmorillonite (MMT) nanosheets with opposite charges can be expected to provide a pseudo electronic microenvironment (PEM) which has not been declared in previous literatures, and transition metal-bearing LDHs nanosheets can offer an additional ferromagnetic effect (FME) for the chromophores at the same time. Surprisingly, the luminescent lifetimes of those OMFs with PEM and FME are significantly prolonged compared with that of the pristine chromophores, even much longer than those of OMFs without oppositely-charged and ferromagnetic architecture. Therefore, it is highly expected that the PEM and FME formed by oppositely-charged and transition metal-bearing inorganic nanosheets have remarkable influence on obtaining better optical property, which suggests a new potential way to manipulate, control and develop the novel light-emitting materials and optical devices.
机译:在本报告中,基于电荷相反的无机纳米片和不同电荷相反的生色团的发光有序多层薄膜(OMFs)是通过逐层组装的方法制备的。带有相反电荷的层状分层双氢氧化物(LDHs)和蒙脱土(MMT)纳米片有望提供以前的文献中尚未宣布的伪电子微环境(PEM),并且含过渡金属的LDHs纳米片可以提供额外的铁磁效应(FME)用于生色团。令人惊讶的是,与原始生色团相比,具有PEM和FME的OMF的发光寿命大大延长,甚至比没有带相反电荷和铁磁结构的OMF的发光寿命更长。因此,人们高度期望由带相反电荷且带有过渡金属的无机纳米片形成的PEM和FME对获得更好的光学性能具有显着影响,这为操纵,控制和开发新型发光材料提供了新的潜在途径。和光学设备。

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