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Selective electrochemical CO2 conversion to multicarbon alcohols on highly efficient N-doped porous carbon-supported Cu catalysts

机译:在高效的N掺杂多孔碳载Cu催化剂上选择性电化学CO2转化为多元醇

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摘要

The selective and efficient electrocatalytic transformation of carbon dioxide (CO2) to multicarbon alcohols (e.g., C2H5OH and C3H7OH) is a challenge in renewable and sustainable energy research. Herein, a series of hybrid catalysts consisting of Cu nanoparticles supported on N-doped porous carbon (Cu/NPC) were prepared. It was demonstrated that the selectivity for C2H5OH or C3H7OH could be tuned by introducing N-doped porous carbon materials as cocatalysts with different pyridinic N contents, which could in situ produce a reactive CO intermediate from CO2. By varying the pyridinic N content, highly selective production of multicarbon alcohols was achieved using the Cu/NPC hybrid catalysts with a high faradaic efficiency for one pot production of multicarbon alcohols up to 73.3% at -1.05 V (vs. RHE). The faradaic efficiency for C2H5OH and C3H7OH was 64.6% and 8.7%, respectively. The pyridinic N species were likely the CO-producing sites and together with Cu catalytic sites acted cooperatively to produce C2H5OH and C3H7OH via a two-site mechanism for efficient CO2 reduction to multicarbon alcohols. These findings provide novel guidance for the rational design of electrocatalysts and for tuning the catalytic activity and selectivity for multicarbon alcohol production from CO2.
机译:二氧化碳(CO2)对多元醇(例如,C 2 H 5 OH和C3H7OH)的选择性和有效的电催化转化是可再生和可持续能源研究中的挑战。在此,制备由支持在N掺杂的多孔碳(Cu / NPC)上的Cu纳米颗粒组成的一系列杂化催化剂。结果证明,可以通过用不同的吡啶N含量引入与助催化剂将N掺杂的多孔碳材料引入助催化剂,以原位产生来自CO 2的反应性CO中间体来调节C2H5OH或C3H7OH的选择性。通过改变吡啶N含量,使用Cu / NPC杂交催化剂在-1.05V(Vs.Rhe)的高达73.3%的高达73.3%的盆地生产中具有高比率效率的Cu / NPC杂交催化剂来实现多元醇的高度选择性生产。 C2H5OH和C3H7OH的游览效率分别为64.6%和8.7%。吡啶N物种可能是共产生的位点,并且与Cu催化位点一起用于通过双位机制来制备C 2 H 5 OH和C3H7OH,以使有效的CO 2还原为多元醇。这些发现为电催化剂的合理设计提供了新颖的指导,以及从CO 2调节多元醇生产的催化活性和选择性。

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