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Microwave Synthesis of Metallic Nanoparticles Supported on Porous Coordination Polymers: A Bi-functional Catalyst Design for CO_2 Activation and Conversion

机译:多孔配位聚合物负载的金属纳米粒子的微波合成:CO_2活化和转化的双功能催化剂设计

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The efficient separation and conversion of CO_2 from power plant flue gases remains a significant and far reaching global goal. Partially, because of the high energy cost associated with CO_2 separation which makes technologies, such as amine scrubbing and conventional sorbent materials, less attractive. In this work we have used a microwave-assisted method to prepare Mg-based porous coordination polymers (MOF-74) with open metal sites. The material shows a high CO_2 uptake at room temperature mainly due to the high binding energy between the open Mg site (in the coordination polymer) and the oxygen atom of the adsorbed CO_2 molecule. Our results show that the microwave-based Mg-MOF-74 shows superior properties compared to thermally prepared samples such as higher surface area, crystallinity and CO_2 uptake. Pt nanoparticles (<5-10 ran) were deposited on the Mg-MOF-74 as manifested from the TEM results. The Pt nanoparticles were uniformly dispersed across the sample with more aggregations at higher Pt loadings. Different techniques were used to characterize the materials such as (BET surface area, XRD, SEM, EDS, TEM and TGA). These materials function as a bi-functional catalyst and sorbent material with the Mg-MOF-74 material responsible for CO_2 capture and supported Pt nanoparticles responsible for its catalytic activity.
机译:从发电厂烟气中有效分离和转化CO_2仍然是一项重要的目标,而且远未达到全球目标。部分原因是由于与CO_2分离相关的高能源成本,这使得诸如胺洗涤和常规吸附剂材料之类的技术吸引力降低。在这项工作中,我们使用了微波辅助方法来制备具有开放金属位点的基于Mg的多孔配位聚合物(MOF-74)。该材料在室温下表现出较高的CO_2吸收率,这主要是由于(配位聚合物中的)开放Mg位点与吸附的CO_2分子的氧原子之间具有高结合能。我们的结果表明,与热制备的样品相比,基于微波的Mg-MOF-74具有优越的性能,例如更高的表面积,结晶度和CO_2吸收率。如TEM结果所示,Pt纳米颗粒(<5-10纳米)沉积在Mg-MOF-74上。 Pt纳米颗粒在较高的Pt负载下均匀分布在整个样品中,并且聚集更多。使用了不同的技术来表征材料,例如(BET表面积,XRD,SEM,EDS,TEM和TGA)。这些材料充当双功能催化剂和吸附剂材料,其中Mg-MOF-74材料负责CO_2的捕获,负载的Pt纳米颗粒负责其催化活性。

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