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首页> 外文期刊>Angewandte Chemie >An Integrated CO2 Electrolyzer and Formate Fuel Cell Enabled by a Reversibly Restructuring Pb-Pd Bimetallic Catalyst
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An Integrated CO2 Electrolyzer and Formate Fuel Cell Enabled by a Reversibly Restructuring Pb-Pd Bimetallic Catalyst

机译:集成的CO2电解槽和通过可逆重组PB-PD双金属催化剂的燃料电池形成燃料电池

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摘要

A single device combining the functions of a CO2 electrolyzer and a formate fuel cell is a new option for carbon-neutral energy storage but entails rapid, reversible and stable interconversion between CO2 and formate over a single catalyst electrode. We report a new catalyst with such functionalities based on a Pb-Pd alloy system that reversibly restructures its phase, composition, and morphology and thus alters its catalytic properties under controlled electrochemical conditions. Under cathodic conditions, the catalyst is relatively Pb-rich and is active for CO2-to-formate conversion over a wide potential range; under anodic conditions, it becomes relatively Pd-rich and gains stable catalytic activity for formate-to-CO2 conversion. The bifunctional activity and superior durability of our Pb-Pd catalyst leads to the first proof-of-concept demonstration of an electrochemical cell that can switch between the CO2 electrolyzer/formate fuel cell modes and can stably operate for 12 days.
机译:组合CO2电解槽和甲酸盐燃料电池功能的单个装置是碳中性能量存储的新选择,但在CO 2之间需要快速,可逆且稳定的互连并在单个催化剂电极上甲酸。 我们报告了一种基于PB-Pd合金系统的这种功能的新催化剂,可逆地重组其相,组合物和形态,从而在受控电化学条件下改变其催化性能。 在阴极条件下,催化剂是相对PB的,并且在宽潜在范围内是CO 2 - 甲酸转化的活性物质。 在阳极条件下,它变得相对富含PD和稳定的催化活性,用于甲酸-O2转化。 我们的PB-PD催化剂的双功能活性和优异的耐久性导致电化学电池的第一概念证明,可以在CO2电解槽/甲酸型燃料电池模式之间切换,并且可以稳定地操作12天。

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