Claridge Shelley A, Castleman A W, Khanna Shiv N, Murray Christopher B, Sen Ayusman, Weiss Paul S
Department of Chemistry, The Pennsylvania State University, University Park, Pennsylvania 16802-6300, USA.
ACS Nano. 2009 Feb 24;3(2):244-55. doi: 10.1021/nn800820e.
Cluster-assembled materials offer the ability to tune component properties, lattice parameters, and thus coupling of physical properties through the careful selection and assembly of building blocks. Multi-atom clusters have been found to exhibit physical properties beyond those available from the standard elements in the periodic table; classification of the properties of such clusters effectively enables expansion of the periodic table to a third dimension. Using clusters as superatomic building blocks for hierarchically assembled materials allows these properties to be incorporated into designer materials with tailored properties. Cluster-assembled materials are currently being explored and methods developed to control their design and function. Here, we discuss examples of building block syntheses, assembly strategies, and property control achieved to date.
团簇组装材料能够通过精心选择和组装结构单元来调节组分性质、晶格参数,进而调控物理性质的耦合。人们发现多原子团簇展现出的物理性质超出了元素周期表中标准元素的性质;对这类团簇性质的分类有效地使元素周期表扩展到了三维。将团簇用作分层组装材料的超原子结构单元,可使这些性质融入具有定制性质的设计材料中。目前,人们正在探索团簇组装材料,并开发控制其设计和功能的方法。在此,我们讨论迄今已实现的结构单元合成、组装策略及性质控制的实例。