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A comparative study of depositing Cu-BTC metal-organic framework onto cellulosic filter paper via different procedures

机译:通过不同程序将Cu-BTC金属 - 有机骨架沉积在纤维素滤纸上的对比研究

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Cellulose-based material has been increasingly used as a suitable substrate for depositing metal-organic frameworks (MOFs) in recent years. In this work, MOFs (Cu-BTC) were deposited onto carboxymethylated filter paper (CMP) using four different preparation procedures: one-pot, two-step, layer-by-layer-organic (LbL-org), and layer-by-layer-water-organic (LbL-wtr-org). The products (Cu-BTC@CMP) were comparatively characterized by SEM, ATR FT-IR, XRD, and BET specific surface area analyses. The Cu-BTC crystals were immobilized on the CMP surface, where different deposit ratios (1.31% for one-pot, 4.23% for two-step, 31.49% for LbL-org, and 39.38% for LbL-wtr-org, respectively) were obtained when different preparation procedures were used under the precondition of the same chemical dosage and reaction time. The Cu-BTC crystals were found to grow in the main solution rather than on the substrate surface and the layer-by-layer method would contribute to a remarkable quantity of MOFs depositing onto the substrate surface. The crystals on Cu-BTC@CMP surface prepared by LbL-wtr-org procedure presented a much larger particle size and rougher surface compared to those prepared by the LbL-org procedure due to the aqueous solution of copper precursor. Depositing more Cu-BTC onto CMP surface also endowed the composite prepared by LbL-wtr-org procedure with the highest gas adsorption capacity (1.59 x 10(2) m(2)/g of BET specific surface area). Hence, the LbL-wtr-org procedure will be an optimal pathway for depositing metal-organic frameworks onto cellulose-based materials with the advantages of saving organic solvents and best gas adsorption ability.
机译:纤维素的材料越来越多地用作近年来沉积金属 - 有机框架(MOF)的合适基底。在这项工作中,使用四种不同的制剂方法将MOF(Cu-BTC)沉积在羧甲基化滤纸(CMP)上:一锅,两步,层 - 有机(LBL-ORG)和层 - 层 - 水 - 有机(LBL-WTR-ORG)。通过SEM,ATR FT-IR,XRD和BET比表面积分析相比表征产品(Cu-BTC @ CMP)。将Cu-BTC晶体固定在CMP表面上,其中不同的沉积物比(1.31%,对于单瓶,4.23%,对于LBL-ORG的31.49%,分别为LBL-WTR-ORG的39.38%)当在相同的化学剂量和反应时间的前提下使用不同的制备程序时获得。发现Cu-BTC晶体在主溶液中生长而不是在基板表面上生长,并且层逐层方法将有助于沉积在基板表面上的显着大量的MOF。通过LBL-WTR-ORG程序制备的Cu-BTC @ CMP表面上的晶体与通过LBL-ORG程序制备的粒度和更粗糙的表面,由于铜前体的水溶液制备的那些。将更多Cu-BTC沉积到CMP表面上也赋予了通过LBL-WTR-ORG程序制备的复合材料,其气体吸附容量(1.59×10(2)m(2)m(2)/ g的BET比表面积)。因此,LBL-WTR-ORG程序将是用于将金属 - 有机骨架沉积在基于纤维素的材料上的最佳途径,其具有节省有机溶剂和最佳气体吸附能力的优点。

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