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首页> 外文期刊>Journal of the American Chemical Society >Tuning the Molecular and Cationic Affinity in a Series of Multifunctional Metal-Organic Frameworks Based on Dodecanuclear Zn(II) Carboxylate Wheels
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Tuning the Molecular and Cationic Affinity in a Series of Multifunctional Metal-Organic Frameworks Based on Dodecanuclear Zn(II) Carboxylate Wheels

机译:基于十二烷核锌(II)羧酸盐轮调节一系列多功能金属有机骨架中的分子和阳离子亲和力。

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A series of new zinc(II)-thiophene-2,5-dicarboxylate (tdc) MOFs based on novel dodecanuclear wheel-shaped building blocks has been synthesized in almost quantative yields. Single-crystal X-ray diffraction analyses reveal 3D porous frameworks with a complex composition [Zn-12(tdc)(6)(glycolate)(6)(dabco)(3)] where glycolate is a deprotonated polyatomic alcohol (ethylene glycol, EgO(2), 1; 1,2-propanediol, PrO2, 2; 1,2-butanediol, BuO2, 3; 1,2-pentanediol, PeO(2), 4; glycerol, GlO(2), 5) and dabco is 1,4-diazo[2.2.2.]bicyclooctane. All compounds 1-5 are isostructural except for pendant groups of the diols decorating the surface of channels. The adsorption of small gases (N-2, CO2, CH4, C2H2, C2H4, C2H6) and larger hydrocarbons (benzene, cyclohexane) both in liquid and vapor phases was thoroughly investigated for all compounds. The zero-coverage adsorption enthalpies, Henry constants, and selectivity factors by various models are calculated and discussed. The versatile adsorption functionality of the title series results from the variable nature of the diol and could be tailored for a specific adsorbate system. For example, 1 shows excellent selectivity of benzene over cyclohexane (20:1 for vapors, 92:1 for liquid phase), while 4 demonstrates unprecedented adsorption preference of cyclohexane over benzene (selectivity up to 5:1). The compound 5 demonstrates great adsorption selectivity for CO2/N-2 (up to 75.1), CO2/CH4 (up to 7.7), C2H2/CH4 (up to 14.2), and C2H4/CH4 (up to 9.4). Also, due to polar nature of the pores, 5 features size-selective sorption of alkaline metal cations in order Li+ > Na+ > Cs+ as well as a notable luminescent response for cesium(I) ions and urea.
机译:基于新型十二烷核轮状结构单元的一系列新的锌(II)-噻吩-2,5-二羧酸(tdc)MOF已以接近定量的产率合成。单晶X射线衍射分析揭示了具有复杂组成的3D多孔骨架[Zn-12(tdc)(6)(乙醇酸)(6)(dabco)(3)],其中乙醇酸是去质子化的多原子醇(乙二醇, EgO(2),1; 1,2-丙二醇,PrO2,2; 1,2-丁二醇,BuO2,3; 1,2-戊二醇,PeO(2),4;甘油,G10(2),5)和dabco是1,4-重氮[2.2.2。]双环辛烷。除了装饰通道表面的二醇的侧基以外,所有化合物1-5都是同构的。彻底研究了所有化合物在液相和气相中对小气体(N-2,CO2,CH4,C2H2,C2H4,C2H6)和较大烃(苯,环己烷)的吸附。计算并讨论了各种模型的零覆盖吸附焓,亨利常数和选择性因子。标题系列的多功能吸附功能来自二醇的可变性质,可以针对特定的吸附物系统进行定制。例如,1显示出苯对环己烷的出色选择性(蒸气为20:1,液相为92:1),而4显示出环己烷对苯的前所未有的吸附偏好(选择性高达5:1)。化合物5对CO2 / N-2(最高75.1),CO2 / CH4(最高7.7),C2H2 / CH4(最高14.2)和C2H4 / CH4(最高9.4)具有很高的吸附选择性。同样,由于孔隙的极性,5以Li +> Na +> Cs +的顺序选择性吸附碱金属阳离子,以及铯(I)离子和尿素的显着发光响应。

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