High-Entropy Metal Sulfide Promises High-Performance Carbon Dioxide Reduction
作者:Lei Gong, Wei‐Ning Zhang, Yan Zhuang, Kai-Yue Zhang, Qiuyu Zhao, Dongdong Xiao, Shuo Liu, Zhiwei Liu, Yongzheng Zhang · 发表于:ACS Applied Materials & Interfaces · 年份:2024 · DOI:10.1021/acsami.4c16847 · 被引用次数:13 · 研究领域:CO2 Reduction Techniques and Catalysts、Electrocatalysts for Energy Conversion、Advanced Thermoelectric Materials and Devices
The efficient conversion of carbon dioxide (CO 2 ) requires the development of stable catalysts with high selectivity and reactivity within a wide potential range. Here, the high-entropy metal sulfide CuAgZnSnS 4 is designed for CO 2 reduction with excellent performance (FE carbon products ≥ 90%) in whole test potential windows (600 mV) based on the synergistic effect of the high-entropy metal sulfide. In particular, CuAgZnSnS 4 exhibits better single-product selectivity with the highest FE HCOOH /FE CO value (29.03) at −1.28 versus reversible hydrogen electrode (RHE). In combination with in situ measurements and theoretical calculations, it is further revealed that the synergistic effect of CuAgZnSnS 4 realizes the controllable regulation of the surface electronic structure at Sn active sites, strengthening orbital interactions between *OCHO and Sn active sites. As a result, the effective adsorption and activation of *OCHO instead of *H are obtained, improving the single-product selectivity of electrocatalytic CO 2 reduction and inhibiting the competitive hydrogen evolution reaction significantly. Our findings may complete the understanding of the synergistic effect for high-entropy materials in catalysis and offer new insight into the design of efficient electrocatalysts with high catalytic activity.