Science. 1977 Feb 18;195(4279):641-6. doi: 10.1126/science.195.4279.641.
In recent years major progress has been made in the area of heterogeneous catalysis by metals. Much has been learned about the nature of metal catalysts and of catalytic phenomena on metals. Characteristic patterns of catalytic behavior among the metallic elements have been established for certain classes of reactions, and these patterns provide a first step toward a more comprehensive understanding of catalytic specificity. Studies on metal alloys and related bimetallic catalysts have revived interest in a geometric factor in surface catalysis to complement the traditional electronic factor. Closely related to this geometric factor is the discovery that selectivity, rather than activity alone, is a major factor in reactions on bimetallic catalysts. Concurrent with progress in understanding how catalysts work, advances are also being made in the development of new catalyst systems, examples of which are the bimetallic (or polymetallic) cluster catalysts. Research in this area provides an example of how advances in catalyst technology can be realized within a framework of fundamental research on catalytic phenomena (38).
近年来,金属多相催化领域取得了重大进展。人们对金属催化剂的性质以及金属上的催化现象有了更多的了解。某些类型的反应中已经确立了金属元素之间催化行为的典型模式,这些模式为更全面地理解催化特异性提供了第一步。对金属合金和相关双金属催化剂的研究重新引起了人们对表面催化中几何因素的兴趣,以补充传统的电子因素。与几何因素密切相关的是,人们发现选择性而不仅仅是活性是双金属催化剂上反应的一个主要因素。与对催化剂如何工作的理解进展同时,新的催化剂体系的开发也取得了进展,其中的例子是双金属(或多金属)簇催化剂。该领域的研究为如何在催化现象的基础研究框架内实现催化剂技术的进步提供了一个范例(38)。