Department of Chemistry, University of Prince Edward Island, 550 University Avenue, Charlottetown, Prince Edward Island, C1A 4P3, Canada.
Macromol Rapid Commun. 2014 Mar;35(5):513-59. doi: 10.1002/marc.201300826. Epub 2014 Jan 28.
Sandwich complexes feature unique properties as the physical and electronic properties of a hydrocarbon ligand or its derivative are integrated into the physical, electronic, magnetic, and optical properties of a metal. Incorporation of these complexes into macromolecules results in intriguing physical, electrical, and optical properties that were hitherto unknown in organic-based macromolecules. These properties are tunable through well-designed synthetic strategies. This review surveys many of the synthetic approaches that have resulted in tuning the properties of sandwich complex-containing macromolecules. While the past two decades have seen an ever-growing number of research publications in this field, gaps remain to be filled. Thus, we expect this review to stimulate research interest towards bridging these gaps, which include the insolubility of some of these macromolecules as well as expanding the scope of the sandwich complexes.
夹心配合物具有独特的性质,因为碳氢化合物配体或其衍生物的物理和电子性质被整合到金属的物理、电子、磁性和光学性质中。将这些配合物掺入聚合物中会导致具有有趣的物理、电学和光学性质,这些性质在以前的有机聚合物中是未知的。这些性质可以通过精心设计的合成策略进行调节。本综述调查了许多导致调节含夹心配合物的聚合物性质的合成方法。虽然过去二十年在这个领域的研究出版物数量不断增加,但仍存在一些空白。因此,我们希望这篇综述能够激发人们的研究兴趣,以填补这些空白,包括这些聚合物中的一些不溶性以及扩大夹心配合物的范围。