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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Bifunctional Nickel-Nitrogen-Doped-Carbon-Supported Copper Electrocatalyst for CO2 Reduction
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Bifunctional Nickel-Nitrogen-Doped-Carbon-Supported Copper Electrocatalyst for CO2 Reduction

机译:双官能镍 - 氮掺杂 - 碳负载铜电催化剂用于CO2还原

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Bifunctionality is a key feature of many industrial catalysts, supported metal clusters and particles in particular, and the development of such catalysts for the CO2 reduction reaction (CO2RR) to hydrocarbons and alcohols is gaining traction in light of recent advancements in the field. Carbonsupported Cu nanoparticles are suitable candidates for integration in the state-ofthe-art reaction interfaces, and here, we propose, synthesize, and evaluate a bifunctional Ni-N-doped-C-supported Cu electrocatalyst, in which the support possesses active sites for selective CO2 conversion to CO and Cu nanoparticles catalyze either the direct CO2 or CO reduction to hydrocarbons. In this work, we introduce the scientific rationale behind the concept, its applicability, and the challenges with regard to the catalyst. From the practical aspect, the deposition of Cu nanoparticles onto carbon black and Ni-N-C supports via an ammonia-driven deposition precipitation method is reported and explored in more detail using X-ray diffraction, thermogravimetric analysis, and hydrogen temperature-programmed reduction. High-angle annular dark-field scanning transmission electron microscopy (HAADF-STEM) and energy-dispersive X-ray spectroscopy (EDXS) give further evidence of the presence of Cu-containing nanoparticles on the Ni-N-C supports while revealing an additional relationship between the nanoparticle's composition and the electrode's electrocatalytic performance. Compared to the benchmark carbon black-supported Cu catalysts, Ni-N-C-supported Cu delivers up to a 2-fold increase in the partial C2H4 current density at -1.05 V-RHE (C-1/C-2 = 0.67) and a concomitant 10-fold increase of the CO partial current density. The enhanced ethylene production metrics, obtained by virtue of the higher intrinsic activity of the Ni-N-C support, point out toward a synergistic action between the two catalytic functionalities.
机译:双官能团是许多工业催化剂,支持的金属簇和颗粒的关键特征,特别是在该领域的最近进步的情况下,对烃和醇的CO 2还原反应(CO 2RR)的这种催化剂的发育正在增加牵引力。碳库特的Cu纳米粒子是用于在最先进的反应界面中整合的合适候选者,在此提出,合成和评价双官能Ni-N-掺杂-C载体的Cu电催化剂,其中载体具有活性位点选择性CO 2转化为CO和Cu纳米粒子催化直接CO 2或CO还原至烃。在这项工作中,我们介绍了概念的科学理由,适用性以及关于催化剂的挑战。从实用方面,通过氨驱动的沉积沉淀方法铜纳米颗粒在炭黑和Ni-N-C载体的沉积被报告,并使用X射线衍射,热重分析和氢程序升温还原在更详细的探讨。高角度环形暗场扫描透射电子显微镜(Haadf-step)和能量 - 色散X射线光谱(EDXS)提供了在Ni-NC载体上存在含Cu的纳米颗粒的进一步证据,同时揭示了额外的关系纳米粒子的组成和电极的电催化性能。与基准炭黑负载的Cu催化剂相比,Ni-Nc载体的Cu可在-1.05V-rhe(C-1 / C-2 = 0.67)和A中的部分C2H4电流密度增加到2倍。伴随10倍的CO部分电流密度增加。借助于Ni-N-C载体的较高的内在活性获得增强的乙烯生产度量,指出了两种催化功能之间的协同作用。

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