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固体氧化物电解池中铜增强的一氧化碳电还原

Copper-Enhanced CO Electroreduction in SOECs.

作者信息

Draz Umer, Di Bartolomeo Elisabetta, Panunzi Anna Paola, Pasqual Laverdura Umberto, Lisi Nicola, Chierchia Rosa, Duranti Leonardo

机构信息

Department of Chemical Science and Technologies, University of Rome Tor Vergata, Via della Ricerca Scientifica, 00133 Rome, Italy.

ENEA C.R. Casaccia, Via Anguillarese 301, S.M. di Galeria, 0123 Roma, Italy.

出版信息

ACS Appl Mater Interfaces. 2024 Feb 21;16(7):8842-8852. doi: 10.1021/acsami.3c17766. Epub 2024 Feb 9.

DOI:10.1021/acsami.3c17766
PMID:38334118
Abstract

The development of a Co-free and Ni-free electrocatalyst for carbon dioxide electrolysis would be a turning point for the large-scale commercialization of solid-oxide electrolysis cells (CO-SOECs). Indeed, the demand for cobalt and nickel is expected to become critical by 2050 due to automotive electrification. Currently, the reference materials for CO-SOEC electrodes are perovskite oxides containing Mn or Co (anodes) and Ni-YSZ cermets (cathodes). However, issues need to be addressed, such as structural degradation and/or carbon deposition at the cathode side, especially at high overpotentials. This work designs the 20 mol % replacement of iron by copper in LaSrFeO as a multipurpose electrode for CO-SOECs. LaSrFeCuO (LSFCu) is synthesized by the solution combustion method, and iron partial substitution with copper is evaluated by X-ray powder diffraction with Rietveld refinement, X-ray photoelectron spectroscopy, thermogravimetric analyses, and electrical conductivity assessment. LSFCu is tested as the SOEC anode by measuring the area-specific resistance versus T and pO. LSFCu structural, electrical, and electrocatalytic properties are also assessed in pure CO for the cathodic application. Finally, the proof of concept of a symmetric LSFCu-based CO-SOEC is tested at 850 °C, revealing a current density value at 1.5 V of 1.22 A/cm, which is remarkable when compared to similar Ni- or Co-containing systems.

摘要

开发一种用于二氧化碳电解的无钴无镍电催化剂将是固体氧化物电解槽(CO-SOEC)大规模商业化的一个转折点。事实上,由于汽车电气化,预计到2050年对钴和镍的需求将变得至关重要。目前,CO-SOEC电极的参考材料是含锰或钴的钙钛矿氧化物(阳极)和镍-钇稳定氧化锆金属陶瓷(阴极)。然而,一些问题需要解决,比如阴极侧的结构退化和/或积碳,尤其是在高过电位下。这项工作设计了在LaSrFeO中用铜替代20 mol%的铁,作为CO-SOEC的多功能电极。LaSrFeCuO(LSFCu)通过溶液燃烧法合成,通过Rietveld精修的X射线粉末衍射、X射线光电子能谱、热重分析和电导率评估来评价铁被铜的部分替代情况。通过测量面积比电阻与温度和氧分压的关系来测试LSFCu作为SOEC阳极的性能。还在纯一氧化碳中评估LSFCu在阴极应用中的结构、电学和电催化性能。最后,在850℃下测试了基于对称LSFCu的CO-SOEC的概念验证,结果显示在1.5 V时的电流密度值为1.22 A/cm²,与类似的含镍或含钴系统相比,这一结果非常显著。

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