Fernández Estefanía, Boronat Mercedes
Instituto de Tecnología Química (UPV-CSIC), Universitat Politècnica de València-Consejo Superior de Investigaciones Científicas, Avda. de los Naranjos s/n, 46022 Valencia, Spain.
J Phys Condens Matter. 2019 Jan 9;31(1):013002. doi: 10.1088/1361-648X/aaed84. Epub 2018 Nov 30.
Sub nanometer transition metal clusters composed of a small number of atoms exhibit unexpected electronic, optical, magnetic and catalytic properties that often change substantially as a function of cluster atomicity. Several factors influence their unique catalytic behavior, including their discrete electronic structure of molecular-like orbitals and the accessibility of their low-coordinated atoms. In addition, these factors are strongly correlated so that changes in their morphology may provoke large modifications to their electronic structure and vice versa. The thermodynamic instability of clusters makes it necessary to stabilize them with protective ligands in solution or to support them on solid matrices for practical applications, which introduces non-negligible modifications into their properties. Understanding their cause and extent is the key point to potentially achieve a fine tuning of their catalytic behavior. Selected examples are discussed illustrating important points on this matter, such as the influence of cluster morphology on reactivity, the need of anchoring clusters to avoid sintering and deactivation, and the possible formation of clusters in solution or under reaction conditions, with the associated difficulty to identify them as the true active species.
由少量原子组成的亚纳米级过渡金属簇表现出意想不到的电子、光学、磁学和催化性质,这些性质通常会随着簇原子数的变化而发生显著改变。有几个因素影响它们独特的催化行为,包括它们类似分子轨道的离散电子结构以及低配位原子的可及性。此外,这些因素紧密相关,以至于它们形态的变化可能会引起其电子结构的大幅改变,反之亦然。簇的热力学不稳定性使得在实际应用中必须在溶液中用保护配体稳定它们,或者将它们负载在固体基质上,这会给它们的性质带来不可忽略的改变。了解其原因和程度是潜在实现对其催化行为进行微调的关键。文中讨论了一些选定的例子,以说明关于这一问题的要点,例如簇形态对反应性的影响、锚定簇以避免烧结和失活的必要性,以及在溶液中或反应条件下可能形成簇,同时难以将它们确定为真正的活性物种。