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Fabrication of a new metal–organic framework for sensitive sensing of nitroaromatics and efficient dye adsorption

机译:新型金属有机框架的制备,可灵敏地感应硝基芳烃并有效吸收染料

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The hydrothermal reaction of Cd(II) salt with rigid tetracarboxylate ligand, terphenyl-3,3′′,5,5′′-tetracarboxylic acid (H4L) produced a new metal–organic framework (MOF) {[Cd2(L)(DMF)3]·0.5DMF}n (1). Single crystal X-ray diffraction showed that MOF 1 possesses a 3D microporous framework with 4-connected Dia topology which is based on {Cd2(CO2)4} subunits. MOF 1 is a promising dual functional sensor with high selectivity and sensitivity for the detection and recognition of nitroaromatics (NACs) and Fe3+ ions via alleviation of its fluorescence intensity. Furthermore, 1 also has an excellent capacity to adsorb methylene blue (MB) with high selectivity, and it retains almost similar adsorption performance after being recycled several times. The observed decrease in fluorescence intensity of 1 in the presence of NACs has been addressed by theoretical calculations which indicate that the intensity alleviation of 1 in the presence of NACs can be attributed to an electron and resonance energy transfer between 1 and nitro analytes.
机译:Cd( II )盐与刚性四羧酸酯配体,叔苯基-3,3',5,5''-四羧酸(H 4 L)产生了一个新的金属有机框架(MOF){[Cd 2 (L)(DMF) 3 ]·0.5DMF} n (1)。单晶X射线衍射表明,MOF 1具有3D微孔骨架,该骨架具有基于{Cd 2 (CO 2 4 }子单元。 MOF 1是一种有前途的双功能传感器,具有高选择性和灵敏度,可通过来检测和识别硝基芳香族化合物(NAC)和Fe 3 + 离子减轻其荧光强度。此外,1还具有优异的高选择性吸附亚甲基蓝(MB)的能力,并且经过多次循环后仍保持几乎相同的吸附性能。通过理论计算已经解决了在NAC存在下所观察到的1的荧光强度降低,这表明在NAC存在下1的强度减轻可以归因于1和硝基分析物之间的电子和共振能量转移。

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