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Ultrasonic Synthesis Of The Microporous Metal-organic Framework Cu_3(btc)_2 At Ambient Temperature And Pressure: An Efficient And Environmentally Friendly Method

机译:在环境温度和压力下超声合成微孔金属有机骨架Cu_3(btc)_2:一种高效且环保的方法

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摘要

A three-dimensional (3-D) metal-organic framework (MOF) with 3-D channels, i.e. Cu_3(BTC)_2 (HKUST-1, BTC = benzene-1,3,5-tricarboxylate), was synthesized by using ultrasonic method for the first time. The reaction of cupric acetate and H_3BTC in a mixed solution of DMF/EtOH/H_2O (3:1:2, v/v) under ultrasonic irradiation at ambient temperature and atmospheric pressure for short reaction times (5-60min) gave Cu_3(BTC)_2 in high yields (62.6-85.1%). These Cu_3(BTC)_2 nano-crystals have dimensions of a size range of 10-200 nm, which are much smaller than those synthesized using conventional solvothermal method. There were no significant differences in physicochemical properties, e.g. BET surface area, pore volume, and hydrogen storage capacity, between Cu_3(BTC)_2 nano-crystals prepared using ultrasonic method and the microcrystals obtained by using improved solvothermal method. Compared with traditional synthetic techniques, such as solvent diffusion technique, hydrothermal and solvothermal methods, ultrasonic method for the construction of porous MOFs was found to be highly efficient and environmentally friendly.
机译:通过使用以下方法合成了具有3-D通道的三维(3-D)金属有机骨架(MOF):Cu_3(BTC)_2(HKUST-1,BTC =苯-1,3,5-三羧酸酯)首次使用超声波方法。乙酸铜和H_3BTC在DMF / EtOH / H_2O(3:1:2,v / v)的混合溶液中于环境温度和大气压下在超声辐射下短时间反应(5-60min)的反应得到Cu_3(BTC )_2(62.6-85.1%)。这些Cu_3(BTC)_2纳米晶体的尺寸范围为10-200 nm,比使用常规溶剂热法合成的尺寸小得多。理化性质没有显着差异,例如超声法制备的Cu_3(BTC)_2纳米晶体与改进溶剂热法获得的微晶之间的BET表面积,孔体积和储氢容量。与溶剂扩散法,水热法和溶剂热法等传统合成技术相比,超声波法制备多孔MOF的效率高且对环境友好。

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