Kong Xiao, Wu Hao, Lu Kun, Zhang Xinyi, Zhu Yifeng, Lei Hanwu
School of Materials and Chemistry, University of Shanghai for Science and Technology, 516 Jungong Road, Shanghai 200093, P. R. China.
Department of Chemistry, Shanghai Key Laboratory of Molecular Catalysis and Innovative Materials, Fudan University, Shanghai 200433, P. R. China.
ACS Appl Mater Interfaces. 2023 Sep 6;15(35):41205-41223. doi: 10.1021/acsami.3c08922. Epub 2023 Aug 28.
The galvanic replacement reaction (GRR) is recognized as a redox process where one metal undergoes oxidation by the ions of another metal possessing a higher reduction potential. This reaction takes place at the interface between a substrate and a solution containing metal ions. Utilizing metal or metal oxide as sacrificial templates enables the synthesis of metallic nanoparticles, oxide-metal composites, and mixed oxides through GRR. Growing evidence showed that GRR has a direct impact on surface structures and properties. This has generated significant interest in catalysis and opened up new horizons for the application of GRR in energy and chemical transformations. This review provides a comprehensive overview of the synthetic strategies utilizing GRR for the creation of catalytically active structures. It discusses the formation of alloys, intermetallic compounds, single atom alloys, metal-oxide composites, and mixed metal oxides with diverse nanostructures. Additionally, GRR serves as a postsynthesis method to modulate metal-oxide interfaces through the replacement of oxide domains. The review also outlines potential future directions in this field.
电置换反应(GRR)被认为是一种氧化还原过程,其中一种金属被另一种具有更高还原电位的金属离子氧化。该反应发生在基底与含有金属离子的溶液之间的界面处。利用金属或金属氧化物作为牺牲模板能够通过电置换反应合成金属纳米颗粒、氧化物-金属复合材料和混合氧化物。越来越多的证据表明,电置换反应对表面结构和性质有直接影响。这引起了人们对催化的极大兴趣,并为电置换反应在能量和化学转化中的应用开辟了新的前景。本综述全面概述了利用电置换反应创建催化活性结构的合成策略。它讨论了具有不同纳米结构的合金、金属间化合物、单原子合金、金属-氧化物复合材料和混合金属氧化物的形成。此外,电置换反应作为一种后合成方法,通过替换氧化物域来调节金属-氧化物界面。该综述还概述了该领域未来潜在的发展方向。