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Porous Metal-Organic Frameworks Containing Alkali-Bridged Two-Fold Interpenetration: Synthesis, Gas Adsorption, and Fluorescence Properties

机译:包含碱桥二重互穿的多孔金属有机骨架:合成,气体吸附和荧光性质。

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摘要

Solvothermal reactions of Zn(NO3)(2)center dot 6H(2)O and alkali (Na, K) chloride with the trigonal-planar ligand benzene-1,3,5-tribenzoic acid (H3BTB) gave rise to two new crystalline porous metal-organic frameworks (MOFs), [Zn3Na2O(BTB)(2)(DMF)(2)](DMF)(H2O) and [Zn2K3(BTB)(2)(HCOO)(DMF)(3)](DMF)(3)(H2O)(2), respectively. Both phases have Zn3Na2(mu(4)-O) and Zn2K2(HCOO) clusters as molecular building block nodes, and they form similar alkali-bridged 2-fold interpenetrated, (3,6)-connected nets with the mineral rtl-c topology. The alkali-bridged interpenetration reduces the flexibility of their interpenetrated nets, affording permanent porosity and high thermal stability. These two MOFs also exhibit high capacities of hydrogen uptake and strong solid fluorescent emissions.
机译:Zn(NO3)(2)中心点6H(2)O和碱金属(Na,K)的氯化物与三角平面配体苯-1,3,5-三苯甲酸(H3BTB)的溶剂热反应产生了两个新的晶体多孔金属有机骨架(MOF),[Zn3Na2O(BTB)(2)(DMF)(2)](DMF)(H2O)和[Zn2K3(BTB)(2)(HCOO)(DMF)(3)]( DMF)(3)(H2O)(2)。这两个阶段均具有Zn3Na2(mu(4)-O)和Zn2K2(HCOO)簇作为分子构件节点,并且它们与矿物质rtl-c形成相似的碱桥2倍互穿,(3,6)连接的网。拓扑。碱桥互穿降低了其互穿网的柔韧性,提供了永久孔隙率和高热稳定性。这两个MOF还表现出高的氢气吸收能力和强烈的固体荧光发射。

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