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首页> 外文期刊>Nanoscale >Fluorescent 2D metal-organic framework nanosheets (MONs): design, synthesis and sensing of explosive nitroaromatic compounds (NACs)
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Fluorescent 2D metal-organic framework nanosheets (MONs): design, synthesis and sensing of explosive nitroaromatic compounds (NACs)

机译:荧光2 d nanosheets有机框架(蒙斯):设计、合成和感应的爆炸硝基芳香化合物化合物(北亚)

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2D metal-organic framework nanosheets (MONs) lie at the heart of contemporary research on metal-organic materials. We have rationally designed and synthesized a fluorescent 6-connecting hexaacid linker H(6)TPA based on the 1,3,5-triphenylbenzene core to access layered MOFs by metal-assisted self-assembly. Treatment of H(6)TPA with In3+ salt does indeed lead to a layered porous MOF, i.e.In-TPA. It is shown that the ultrasonication-induced liquid phase of exfoliation (UILPE) of the latter in a top-down fashion affords few-layer 2D metal-organic nanosheets (MONs). The delamination of 2D MONs in ethanol occurs with turn-on' fluorescence, which is otherwise suppressed in the bulk material. The exfoliated MONs in ethanol exhibit blue fluorescence with a respectable quantum yield of 0.15 and serve as efficient sensory materials for turn-off' fluorescence detection of explosive nitroaromatic compounds (NACs). While all nitroaromatics are found to quench the fluorescence of MONs, the most electron-deficient trinitrotoluene (TNT) exhibited the highest efficiency; at 2 mM concentration of TNT, the fluorescence of 2D MONs was found to be quenched with an efficiency of 80 (permitting the detection of TNT at ca. 11 ppm level), while that of the unmetallated linker, i.e.H(6)TPA, was quenched with only 5 efficiency. The unique attributes of MONs, namely the rigidity of the linker upon metallation and porosity that facilitates guest confinement within the pores, for efficient sensing of nitroaromatics are thus demonstrated for the first time.
机译:2 d有机框架nanosheets(隆起)说谎当代研究的核心有机材料。设计和合成荧光6-connecting hexaacid链接器H (6) TPA的基础上1、3、5-triphenylbenzene核心访问分层财政部metal-assisted自组装。H (6) TPA In3 +盐确实导致分层多孔MOF, i.e.In-TPA。ultrasonication-induced液相去死皮(UILPE)自上而下的后者时尚赋予few-layer 2 d有机配合nanosheets(蒙斯)。乙醇与刺激的荧光,这发生否则压抑在散装材料。清新隆起乙醇展览蓝色受人尊敬的量子产率的荧光0.15,作为高效的感觉材料断开的荧光检测炸药硝基芳香化合物化合物(北亚)。硝基芳香化合物发现淬火荧光的隆起,最缺电子三硝基甲苯(TNT)表现出最高的效率;2 d蒙斯被发现的荧光熄灭80%的效率(允许检测TNT的ca。11 ppm级),而unmetallated链接器,i.e.H (6) TPA,淬火效率只有5%。蒙斯的属性,即刚性的链接器金属取代和孔隙度促进客人监禁在毛孔内,硝基芳香化合物有效传感的如此首次证明了。

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