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Enhanced Electrocatalytic CO_2 Reduction to C_(2+) Products by Adjusting the Local Reaction Environment with Polymer Binders

机译:通过使用聚合物粘结剂调整局部反应环境,增强电催化CO_2还原为C_(2+)产物

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摘要

The activity and selectivity of the electrochemical CO2 reduction reaction (CO2RR) are often hindered by the limited access of CO2 to the catalyst surface and overtaken by the competing hydrogen evolution reaction. Herein, it is revealed that polymers used as catalyst binders can effectively modulate the accessibility of CO2 relative to H2O at the vicinity of the catalyst and thus the performance of CO2RR. Three polymers with different hydrophilicities (i.e., polyacrylic acid (PAA), Nafion, and fluorinated ethylene propylene (FEP)) are selected as binders for Cu catalysts. At a thickness of only approximate to 1.2 nm, these binders strongly affect the activity and selectivity toward multi-carbon (C2+) products. The FEP coated catalyst exhibits a C2+ partial current density of over 600 mA cm(-2) with approximate to 77 faradaic efficiency at -0.76 V versus RHE. This high performance is attributed to the hydrophobic (aerophilic) properties of FEP, which reduces the local concentration of H2O and enhances that of the reactant (i.e., CO2) and the reaction intermediates (i.e., CO). These findings suggest that tuning the hydrophobicity of electrocatalysts with polymer binders can be a promising way to regulate the performance of electrochemical reactions involving gas-solid-liquid interfaces.
机译:电化学CO2还原反应(CO2RR)的活性和选择性通常受到CO2进入催化剂表面的限制,并被竞争性的析氢反应所取代。本文揭示了用作催化剂粘结剂的聚合物可以有效地调节催化剂附近CO2相对于H2O的可及性,从而调节CO2RR的性能。选用聚丙烯酸(PAA)、Nafion和氟化乙丙烯(FEP)三种不同亲水性的聚合物作为Cu催化剂的粘结剂。这些粘合剂的厚度仅接近 1.2 nm,对多碳 (C2+) 产物的活性和选择性有很大影响。FEP涂层催化剂的C2+部分电流密度超过600 mA cm(-2),与RHE相比,在-0.76 V下法拉第效率约为77%。这种高性能归因于FEP的疏水性(亲气性),它降低了H2O的局部浓度,并增强了反应物(即CO2)和反应中间体(即CO)的浓度。这些发现表明,用聚合物粘结剂调节电催化剂的疏水性可能是调控气-固-液界面电化学反应性能的一种有前途的方法。

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