首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >Accessing Postsynthetic Modification in a Series of Metal-Organic Frameworks and the Influence of Framework Topology on Reactivity
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Accessing Postsynthetic Modification in a Series of Metal-Organic Frameworks and the Influence of Framework Topology on Reactivity

机译:在一系列金属有机骨架中访问合成后的修饰以及骨架拓扑对反应性的影响

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2-Amino-1,4-benzenedicarboxylic acid (NH2-BDC) has been found to be a compatible building block for the construction of two new metal-organic frameworks (MOFs) that have structures isoreticular to reported MOFs that use 1,4-benzenedicarboxylic acid (BDC) as a building block. DMOF-1-NH2 (DABCO MOF-1-NH2) is a derivative of a previously studied MOF that contains two-dimensional square grids based on NH2-BDC and zinc(II) paddle-wheel units; the grid layers are connected by DABCO (1,4-diazabicyclo[2.2.2]octane) molecules that coordinate in the axial positions of the paddlewheel secondary-building units (SBUs). UMCM-1-NH2 is an NH2-BDC derivative of UMCM-1 (University of Michigan Crystalline Material-1), a highly porous MOF reported by Matzger et aL, and consists of both NH2-BDC and BTB (BTB = 4,4',4 ''-benzene-1,3,5-triyl-tribenzoate) linkers with Zn4O SBUs. The structure of UMCM-1-NH2 was confirmed by single-crystal X-ray diffraction. By using NH2-BDC to generate these MOFs, the pendant amino groups can serve as a chemical handle that can be manipulated via postsynthetic modification with alkyl anhydrides. Reactions of each MOF and different anhydrides have been performed to compare the extent of conversion, thermal and structural stability, and Brunauer-Emmett-Teller surface areas afforded by the resulting materials. Under comparable reaction conditions, H-1 NMR of digested samples show that UMCM-1NH(2) has conversions comparable to that of I IRMOF-3, while DMOF-1-NH2 only shows high conversions with smaller anhydrides. Under specific reaction conditions, higher conversions were obtained with complete retention of crystallinity, as verified by single-crystal X-ray diffraction experiments. The results presented here demonstrate three important findings: (a) NH2-BDC can be used as a surrogate for BDC in a number of MOFs thereby providing a handle for postsynthetic modification, (b) postsynthetic modification is a general strategy to functionalizing MOFs that can be applied to a variety of MOF structures, and (c) the topology and chemical/thermal stability of a MOF can influence the type of chemical reactions and reagents that can be used for postsynthetic modification.
机译:已发现2-氨基-1,4-苯二甲酸(NH2-BDC)是兼容的构建基块,可用于构建两个新的金属有机框架(MOF),其结构与已报道的使用1,4- MOF的网状结构相同苯二甲酸(BDC)作为构建基块。 DMOF-1-NH2(DABCO MOF-1-NH2)是先前研究的MOF的派生产品,MOF包含基于NH2-BDC和锌(II)桨轮单元的二维方格;网格层由DABCO(1,4-二氮杂双环[2.2.2]辛烷)分子连接,这些分子在桨叶二级建造单元(SBU)的轴向位置上进行协调。 UMCM-1-NH2是UMCM-1(密歇根大学结晶材料-1)的NH2-BDC衍生物,这是Matzger等人报道的高度多孔的MOF,由NH2-BDC和BTB组成(BTB = 4,4 ',4''-苯-1,3,5-三苯甲酸酯)与Zn4O SBUs连接。 UMCM-1-NH2的结构通过单晶X射线衍射确认。通过使用NH2-BDC生成这些MOF,氨基侧基可以用作化学处理,可以通过烷基酸酐的后合成修饰进行操纵。已进行了每种MOF与不同酸酐的反应,以比较所得材料提供的转化率,热和结构稳定性以及Brunauer-Emmett-Teller表面积。在可比的反应条件下,消化样品的H-1 NMR显示UMCM-1NH(2)的转化率可与I IRMOF-3媲美,而DMOF-1-NH2仅显示较小酸酐的高转化率。如单晶X射线衍射实验所证实的,在特定的反应条件下,获得了较高的转化率,并完全保留了结晶度。此处显示的结果证明了三个重要发现:(a)NH2-BDC可以用作许多MOF中BDC的替代品,从而提供合成后修饰的处理方法(b)合成后修饰是使MOF功能化的通用策略可用于多种MOF结构,并且(c)MOF的拓扑结构和化学/热稳定性会影响可用于后合成修饰的化学反应和试剂的类型。

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