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Synthesis of novel nanoporous metal-organic gels with tunable porosity and sensing of aromatic compounds

机译:具有可调谐孔隙率的新型纳米多孔金属 - 有机凝胶的合成及芳族化合物的感测

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Herein we report the bottom up design of novel porous metal-organic gels (MOGs) Fe-ndc (H(2)ndc - 2,6-naphthalene dicarboxylic acid) and Fe-btc (H(4)btc - 1,2,4,5-benzenetetracarboxylic acid) based on Fe3+. The effective strategy to obtain MOGs with controllable porosity by changing the concentrations of precursors was studied. The MOGs were dried in vacuum and the resultant xerogels were fully characterized using PXRD, TGA, FT-IR spectroscopy and SEM techniques. The resultant materials demonstrated a wide range of BET surface area 0-290 m(2)/g. Presence of micro ( 2 nm), meso (2-50 nm) and macropores ( 50 nm) in obtained xerogels was found. Furthermore, Fe-ndc demonstrated strong dependence of photoluminescence properties on the nature of the guest molecules. A unique enhancement effect of maximum luminescence intensity of the host framework Fe-ndc in the presence of toluene (862%). Introduction of benzene led to just 42% increase of luminescence intensity of material compared to Fe-ndc. Quenching effects of maximum luminescence intensity of the host framework upon introduction of nitrobenzene (67%) and 1,3-dinitrobenzene (46%) were found. These features make Fe-ndc an efficient fluorescent material for selective detection of hazardous highly energetic aromatic compounds.
机译:在此,我们报告了新型多孔金属 - 有机凝胶(MOG)Fe-NdC(H(2)NdC - 2,6-萘二甲酸)和Fe-BTC(H(4)BTC - 1,2,基于Fe3 +的4,5-苯甲酸羧酸)。研究了通过改变前体浓度来获得具有可控孔隙率的摩晖的有效策略。将液体在真空中干燥,并使用PXRD,TGA,FT-IR光谱和SEM技术完全表征所得的Xerogels。所得材料显示出宽范围的BET表面积0-290m(2)/ g。发现,在获得的Xerogels中发现了微观(&lt 2 nm),meso(2-50nm)和大孔(& 50nm)。此外,Fe-NDC表现出光致发光性质对客体分子性质的强烈依赖性。在甲苯存在下宿主框架Fe-NDC的最大发光强度的独特增强效果(862%)。与FE-NDC相比,苯的引入导致材料的发光强度增加了42%。发现宿主框架的最大发光强度在引入硝基苯(67%)和1,3-二硝基苯(46%)时淬火效果。这些特征使Fe-NDC成为有效的荧光材料,用于选择性地检测危险的高度能量芳族化合物。

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