University of Ulm, Institute of Surface Chemistry and Catalysis, Albert-Einstein-Allee 47, 89069 Ulm, Germany.
Phys Chem Chem Phys. 2012 Jul 14;14(26):9255-69. doi: 10.1039/c2cp40660h. Epub 2012 Jun 6.
Since the advent of intense cluster sources, physical and chemical properties of isolated metal clusters are an active field of research. In particular, gas phase metal clusters represent ideal model systems to gain molecular level insight into the energetics and kinetics of metal-mediated catalytic reactions. Here we summarize experimental reactivity studies as well as investigations of thermal catalytic reaction cycles on small gas phase metal clusters, mostly in relation to the surprising catalytic activity of nanoscale gold particles. A particular emphasis is put on the importance of conceptual insights gained through the study of gas phase model systems. Based on these concepts future perspectives are formulated in terms of variation and optimization of catalytic materials e.g. by utilization of bimetals and metal oxides. Furthermore, the future potential of bio-inspired catalytic material systems are highlighted and technical developments are discussed.
自强簇源出现以来,孤立金属簇的物理和化学性质是一个活跃的研究领域。特别是,气相金属簇代表了理想的模型体系,可以深入了解金属介导的催化反应的能量学和动力学。在这里,我们总结了关于气相金属簇的实验反应性研究以及热催化反应循环的研究,主要与纳米级金颗粒令人惊讶的催化活性有关。特别强调了通过研究气相模型体系获得的概念性见解的重要性。基于这些概念,我们提出了通过改变和优化催化材料(例如,利用双金属和金属氧化物)来展望未来。此外,还强调了生物启发催化材料体系的未来潜力,并讨论了技术发展。