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首页> 外文期刊>Journal of Applied Electrochemistry >CO2 capture and reduction to liquid fuels in a novel electrochemical setup by using metal-doped conjugated microporous polymers
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CO2 capture and reduction to liquid fuels in a novel electrochemical setup by using metal-doped conjugated microporous polymers

机译:通过使用金属掺杂的共轭微孔聚合物,在新型电化学装置中将二氧化碳捕集并还原为液体燃料

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An electrochemical device for the reduction of CO2 back to liquid fuels is here presented. The key of this novel electrocatalytic approach is the design and development of the gas diffusion membrane (GDM), which is obtained by assembling (i) a proton selective membrane (Nafion), (ii) a nanocomposite electrocatalyst based on metal-doped conjugated microporous polymer (CMP) and (iii) a C-based support working as the gas diffusion layer. CMP is a very attractive material able to adsorb CO2 selectively with respect to other gases (such as H-2, O-2, N-2, etc.), also in mild conditions (r.t. and atmospheric pressure). Particularly, tetrakis-phenylethene conjugated microporous polymer (TPE-CMP) was synthesized through Yamamoto homo-coupling reaction. TPE-CMP was modified by depositing noble (Pt) and non-noble (Fe) metal nanoparticles to create the active catalytic sites for the process of CO2 reduction directly on the polymer surface where CO2 is adsorbed. The metal-doped TPE-CMP electrocatalysts were fully characterized by infrared spectroscopy (IR), thermo-gravimetric analysis (TGA) and transmission electron microscopy (TEM). Then, the as-assembled GDM was tested in our homemade semi-continuous three-electrode electrochemical cell working in gas phase at 60 A degrees C, coupled with a cold trap for the accumulation of the liquid products. Results showed the better performances of the metal-doped TPE-CMP in terms of total productivity (C1-C8 oxygenates) with respect to other kinds of materials that do not show high CO2 adsorption capacity.
机译:这里介绍了一种用于将CO2还原为液体燃料的电化学装置。这种新型电催化方法的关键是气体扩散膜(GDM)的设计和开发,该气体扩散膜是通过组装(i)质子选择性膜(Nafion),(ii)基于金属掺杂的共轭微孔的纳米复合电催化剂而获得的聚合物(CMP)和(iii)用作气体扩散层的C基载体。 CMP是非常吸引人的材料,即使在温和的条件下(室温和大气压),它也能够相对于其他气体(例如H-2,O-2,N-2等)选择性地吸收CO2。特别地,通过山本均偶联反应合成了四-苯基乙烯共轭微孔聚合物(TPE-CMP)。通过沉积贵金属(Pt)和非贵金属(Fe)纳米粒子对TPE-CMP进行了改性,以直接在吸附有CO2的聚合物表面上创建用于CO2还原过程的活性催化位。通过红外光谱(IR),热重分析(TGA)和透射电子显微镜(TEM)对金属掺杂的TPE-CMP电催化剂进行了全面表征。然后,在我们自制的半连续三电极电化学电池中以60 A摄氏度的气相温度对组装好的GDM进行测试,并结合一个用于收集液体产品的冷阱。结果表明,相对于其他种类的未表现出高CO2吸附能力的材料,金属掺杂TPE-CMP的总生产率(C1-C8含氧化合物)的性能更好。

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