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Top-down and bottom-up approaches to transparent, flexible and luminescent nitrogen-doped carbon nanodot-clay hybrid films

机译:自顶向下和自底向上方法透明,灵活和发光nitrogen-doped碳nanodot-clay混合的电影

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摘要

Two easy approaches are successfully employed for the preparation of nitrogen-doped carbon nanodot (NCND)-clay hybrids (bulk solids and thin films). Fluorescent and small NCNDs are intercalated within the interlayer space of LAPONITE (R) clay with a simple ion exchange reaction in bulk or embedded between functionalized LAPONITE (R) sheets by combining a layer-by-layer approach with a self-assembly process. In both cases, homogeneous hybrids with 2D-ordered NCNDs (accounting for >20 wt%) are produced, with the NCND optoelectronic properties preserved. Drop casting of suspensions or self-assembly on flexible substrates allows the fabrication of luminescent flexible films. The transparency of the films is found to be adjustable either by controlling the concentration of the drop-cast suspensions or by the number of layers in the self-assembly procedure. The prepared films are stable over time: the inert LAPONITE (R) platelets not only guide the highly ordered 2D assemblies of NCNDs in the interlayer space but also protect them from external agents, which could affect their surfaces and thus alter their optoelectronic properties.
机译:两种简单的方法成功地用于nitrogen-doped碳nanodot的准备(NCND)粘土混合动力车(散装固体和薄膜)。荧光和小NCNDs插入内的夹层空间LAPONITE (R)粘土用一个简单的散装或离子交换反应嵌入式功能化LAPONITE之间(右)表一层相结合的方法自组装过程。均匀混合动力车2 d-ordered NCNDs(占> 20 wt %),产生的NCND光电属性保存。铸造的悬浮液或自组装柔性基板允许的制造发光灵活的电影。电影也发现可调控制drop-cast的浓度悬浮液或的层数自组装过程。随着时间的推移稳定:惰性LAPONITE(右)血小板不仅指导高度有序的二维但总成的NCNDs夹层空间也保护他们免受外部代理可能影响他们的表面,从而改变他们的吗光电性质。

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