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A Versatile Cu-II Metal-Organic Framework Exhibiting High Gas Storage Capacity with Selectivity for CO2: Conversion of CO2 to Cyclic Carbonate and Other Catalytic Abilities

机译:一种多功能的Cu-II金属有机框架,具有高的储气量和对CO2的选择性:将CO2转化为环状碳酸酯和其他催化能力

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摘要

A linear tetracarboxylic acid ligand, H4L, with a pendent amine moiety solvothermally forms two isostructural metal-organic frameworks (MOFs) L-M (M=Zn-II, Cu-II). Framework L-Cu can also be obtained from L-Zn by post- synthetic metathesis without losing crystallinity. Compared with L-Zn, the L-Cu framework exhibits high thermal stability and allows removal of guest solvent and metal-bound water molecules to afford the highly porous, L-Cu. At 77K, L-Cu absorbs 2.57wt% of H-2 at 1bar, which increases significantly to 4.67wt% at 36bar. The framework absorbs substantially high amounts of methane (238.38cm(3)g(-1), 17.03wt%) at 303K and 60bar. The CH4 absorption at 303K gives a total volumetric capacity of 166cm(3)(STP)cm(-3) at 35bar (223.25cm(3)g(-1), 15.95wt%). Interestingly, the NH2 groups in the linker, which decorate the channel surface, allow a remarkable 39.0wt% of CO2 to be absorbed at 1bar and 273K, which comes within the dominion of the most famous MOFs for CO2 absorption. Also, L-Cu shows pronounced selectivity for CO2 absorption over CH4, N-2, and H-2 at 273K. The absorbed CO2 can be converted to value-added cyclic carbonates under relatively mild reaction conditions (20bar, 120 degrees C). Finally, L-Cu is found to be an excellent heterogeneous catalyst in regioselective 1,3-dipolar cycloaddition reactions (click reactions) and provides an efficient, economic route for the one-pot synthesis of structurally divergent propargylamines through three-component coupling of alkynes, amines, and aldehydes.
机译:具有悬垂的胺部分的线性四羧酸配体H4L溶剂热形成两个同构的金属-有机骨架(MOF)L-M(M = Zn-II,Cu-II)。骨架L-Cu也可以通过后合成复分解从L-Zn获得,而不会失去结晶度。与L-Zn相比,L-Cu骨架具有较高的热稳定性,可去除客体溶剂和与金属结合的水分子,从而提供高度多孔的L-Cu。在77K时,L-Cu在1bar时吸收2.57wt%的H-2,在36bar时显着增加到4.67wt%。该框架在303K和60bar下吸收大量的甲烷(238.38cm(3)g(-1),17.03wt%)。在303K处吸收的CH4在35bar(223.25cm(3)g(-1),15.95wt%)时的总体积为166cm(3)(STP)cm(-3)。有趣的是,连接器中的NH2基团修饰了通道表面,允许在1bar和273K处吸收显着的39.0wt%的CO2,这是最著名的吸收MOF的领域。此外,L-Cu在273K时对CH4,N-2和H-2的CO2吸收显示出明显的选择性。吸收的二氧化碳可以在相对温和的反应条件下(20 bar,120摄氏度)转化为增值的环状碳酸酯。最后,发现L-Cu是区域选择性1,3-偶极环加成反应(点击反应)中极好的非均相催化剂,并为通过炔烃的三组分偶联一锅合成结构不同的炔丙基胺提供了一种有效的经济途径,胺和醛。

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