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Role of small Cu nanoparticles in the behaviour of nanocarbon-based electrodes for the electrocatalytic reduction of CO2

机译:小Cu纳米颗粒在纳米碳基电极的作用中的作用,用于电催化还原CO2

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We report here an easy and scalable synthetic route for the preparation of Cu-based nanoelectrodes active in CeC coupling in the process of CO2 electrocatalytic reduction. Copper nanowires (NWs) are used as the precursor for the deposition of small Cu nanoparticles (NPs) onto commercial carbon nanotubes (CNTs), preliminarily activated with HNO3 to create oxygen functional groups on their external surface (o-CNTs). The Cu NWs, in contact with a suspension of o-CNTs in an ethanol-water mixture, transfer Cu fragments onto the o-CNTs. The result is a good dispersion of ultrafine Cu NPs (with an average size of less than 3 nm) preferentially deposited on the external part of the CNTs and evidencing a crystal phase structure of fcc (face-centered cubic) metal Cu(0). The catalytic active phase (Cu NPs/ CNTs) was assembled on a gas diffusion layer and tested in the electro-reduction of CO2, in presence of KHCO3 aqueous electrolyte and under a continuous flow of pure CO2. For comparison, an electrocatalyst synthesized by conventional impregnation route (leading to higher size Cu NPs on o-CNTs and CuO monoclinic phase structure) was also tested. Results showed that the electrode with Cu NPs prepared by NW route was the best in terms of average current and carbon productivity, giving threefold higher formic acid and methanol production with respect to the conventionally prepared Cu/CNT sample. Moreover, C-2-C-3 products (ethanol, acetic acid, isopropanol, acetone) were obtained, showing the possibility of CeC bond formation, probably due to the interfacial catalytic sites between the small Cu NPs and CNTs.
机译:这里我们在此报告了CE2电催化还原过程中CEC偶联中的Cu基纳米电极的简单易伸缩的合成途径。铜纳米线(NWS)用作将小Cu纳米颗粒(NPS)沉积到商业碳纳米管(CNT)上的前体,用HNO 3预先活化,以在其外表面(O-CNT)上产生氧官能团。 Cu NWS与乙醇 - 水混合物中O-CNT的悬浮液接触,将Cu片段转移到O-CNT上。结果是超细Cu nP的良好分散(平均尺寸小于3nm),优先沉积在CNT的外部部分上,并证明FCC(面为中心立方)金属Cu(0)的晶相结构。将催化活性相(Cu NPS / CNT)组装在气体扩散层上并在KHCO 3水性电解质存在下并在连续的纯CO 2的连续流动下测试CO 2的电解中。为了比较,还测试了通过常规浸渍途径合成的电催化剂(导致O-CNT和CuO单斜相结构上的较高尺寸Cu NPS)。结果表明,在平均电流和碳生产率方面,NW途径制备的电极是最佳的,相对于常规制备的Cu / CNT样品,含有三倍高的甲酸和甲醇产生。此外,获得C-2-C-3产物(乙醇,乙酸,异丙醇,丙酮),显示CEC键形成的可能性,可能是由于小Cu NP和CNT之间的界面催化位点。

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