首页> 外文期刊>Chemistry of Materials: A Publication of the American Chemistry Society >Effects of Secondary Anions on Proton Conduction in a Flexible Cationic Phosphonate Metal-Organic Framework
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Effects of Secondary Anions on Proton Conduction in a Flexible Cationic Phosphonate Metal-Organic Framework

机译:二次阴离子对柔性阳离子膦酸盐金属框架中质子传导的影响

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Four new phosphonate MOFs were prepared with cationic dimethylbipiperdinium units: [La-2(H2L)(1.5)(AcO)(2)Br-3.25H(2)O], alpha-PCMOF-21-Br; [La-2(H2L)(1.5)(AcO)Cl-2 center dot 5.25H(2)O], alpha-PCMOF-21-Cl; [La(H2L) (AcO)Br-0.5 center dot 4.93H(2)O(HBr)(1.11)], beta-PCMOE-21-Br; and [La(H2L) (AcO)(0.5)Cl center dot 5.42H(2)O(HCl)(1.79)], beta-PCMOF-21-Cl. All frameworks have the same La phosphonate network structure but differ in the secondary anions (acetate, bromide, chloride), both coordinated and free. All frameworks showed the ability to dehydrate reversibly. Different phases result from very subtle differences in preparation; specifically, the degree of hydration of the ligand impacts the product phase even though syntheses are carried out in water. The alpha phases show a flexible structure by powder X-ray diffraction. The beta phases contain a reproducible stoichiometry of free ligands in the pores that both locks and partially fills the open structure. Alternating current impedance analysis was performed to study proton conductivity. All compounds, except for beta-PCMOE-21-Cl, conduct better than 10(-3) S cm(-1) at 85 degrees C and 95% RH. The trends show that the alpha phases conduct better than the partially pore-blocked beta phases and also that the bromide structures conduct better than the chlorides. To further study the role of the anion, Cl-35 and Br-81 solid-state NMR was performed to elucidate dynamics. These studies also showed the ability of anions to be volatilized from the pores, and TGA-MS confirmed the loss of HX species. Impedance analysis showed a clear decrease in proton conductivity after the loss of the halides, more pronounced in the bromide-containing structures.
机译:用阳离子二甲基皮坡单位(La-2(H2L)(1.5)(AcO)(2)Br-32-11-Br,制备四种新的膦酸酯MOF。 [LA-2(H2L)(1.5)(1.5)(ACO)CL-2中心点5.25H(2)O],Alpha-PCMOF-21-CL; [La(H2L)(ACO)BR-0.5中心点4.93H(2)O(HBR)(1.11)],Beta-PCMOE-21-BR; [La(H2L)(ACO)(0.5)Cl中心点5.42H(2)O(HCl)(1.79)],β-PCMOF-21-Cl。所有框架都具有相同的La膦酸盐网络结构,但在二次阴离子(醋酸盐,溴化物,氯化物)中不同,既配位和自由。所有框架都显示出可逆地脱水的能力。不同的阶段是由准备的非常细微的差异产生;具体地,即使合成在水中进行,配体的水合度也会影响产物阶段。 α相通过粉末X射线衍射显示柔性结构。 β相含有在孔中的自由配体的可再现化学计量,其锁定在锁上并且部分地填充开放结构。进行交流阻抗分析以研究质子电导率。除β-PCMOE-21-C1外,所有化合物除了β-PCMOE-21-CL,在85℃和95%RH下均优于10(-3)厘米(-1)。该趋势表明,α相比部分孔阻断的β相位越好,并且还比氯化物较好地传导溴化物结构。为了进一步研究阴离子的作用,进行CL-35和BR-81固态NMR以阐明动态。这些研究还表明,阴离子挥发的孔隙能力,TGA-MS证实了HX物种的损失。阻抗分析显示在卤化物损失后质子电导率的明显降低,在含溴化物的结构中更明显。

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