Ondrušová Soňa, Bůžek Daniel, Hynek Jan, Plecháček Tomáš, Kubíčková Lenka, Veverka Miroslav, Kmječ Tomáš, Rozprým Matyáš, Kohout Jaroslav, Demel Jan, Kloda Matouš
Institute of Inorganic Chemistry of the Czech Academy of Sciences, Husinec-Řež 1001, 250 68 Řež, Czech Republic.
Department of Inorganic Chemistry, Faculty of Science, Charles University, Hlavova 2030, Prague 12840, Czech Republic.
J Phys Chem C Nanomater Interfaces. 2025 Aug 20;129(35):15850-15864. doi: 10.1021/acs.jpcc.5c04260. eCollection 2025 Sep 4.
Coordination polymers (CPs) are versatile materials formed by metal ions and organic ligands, offering a broad range of structural and functional possibilities. Phosphonates and phosphinates are particularly attractive ligands for CPs due to their multiple binding sites, varied coordination geometries, and ability to form robust network structures. Phosphonates, considered harder ligands, form strong bonds with hard metals such as Fe, while phosphinates offer additional versatility due to the varied pendant groups on phosphorus. This study presents a series of six new coordination polymers, ICR-20 and ICR-21, incorporating Fe, Co, and Ni metal centers, using phosphinate (HPBP-(Me)) or phosphinate-phosphonate (HPPP-(Me)) ligands in combination with 4,4'-bipyridine. The materials are isoreticular despite the incorporation of different functional groups, demonstrating the interchangeability of the phosphinate and phosphonate groups in their design. These polymers were characterized structurally and investigated for their magnetic properties. The combination of local insights from Mössbauer spectroscopy and bulk magnetic data provides complex information on crystal field parameters and magnetic interactions in Fe-based polymers. Additionally, their proton conductivity was evaluated, showing promising results.
配位聚合物(CPs)是由金属离子和有机配体形成的多功能材料,具有广泛的结构和功能可能性。膦酸盐和次膦酸盐因其多个结合位点、多样的配位几何结构以及形成坚固网络结构的能力,成为CPs特别有吸引力的配体。膦酸盐被认为是较硬的配体,能与铁等硬金属形成强键,而次膦酸盐由于磷上不同的侧基提供了额外的多功能性。本研究展示了一系列六种新型配位聚合物,ICR - 20和ICR - 21,它们结合了铁、钴和镍金属中心,使用次膦酸盐(HPBP-(Me))或次膦酸盐 - 膦酸盐(HPPP-(Me))配体与4,4'-联吡啶结合。尽管引入了不同的官能团,这些材料仍是同网状的,证明了次膦酸盐和膦酸盐基团在其设计中的互换性。对这些聚合物进行了结构表征,并研究了它们的磁性。穆斯堡尔光谱的局部见解与体磁数据相结合,提供了关于铁基聚合物中晶体场参数和磁相互作用的复杂信息。此外,还评估了它们的质子传导率,结果很有前景。