Karnes Joseph P, Lind Natalie M, Oliver Allen G, Day Cynthia S, Day Victor W, Blakemore James D
Department of Chemistry, University of Kansas, 1567 Irving Hill Road, Lawrence, Kansas 66045, United States.
Department of Chemistry and Biochemistry, University of Notre Dame, Notre Dame, Indiana 46556, United States.
Inorg Chem. 2025 Jan 13;64(1):571-593. doi: 10.1021/acs.inorgchem.4c03352. Epub 2024 Dec 23.
Both cyclic "crown" and acyclic "tiara" polyethers have been recognized as useful for the binding of metal cations and enabling the assembly of multimetallic complexes. However, the properties of heterobimetallic complexes built upon acyclic polyethers have received less attention than they deserve. Here, the synthesis and characterization of a family of eight redox-active heterobimetallic complexes that pair a nickel center with secondary redox-inactive cations (K, Na, Li, Sr, Ca, Zn, La, and Lu) bound in acyclic polyether "tiara" moieties are reported. Structural studies with X-ray diffraction analysis were carried out on the monometallic nickel precursor complex to the heterobimetallics and the adducts with K, Li, Sr, Zn, and Lu; the results confirm the binding of secondary cations in the tiara site and demonstrate that the tiara moiety is more conformationally flexible than the analogous 18-crown-6-like moiety of a closely related macrocyclic "crown" ligand. Spectroscopic and electrochemical studies show, however, that the stability and cation-driven tunability of the tiara-based heterobimetallic species are quite similar to those previously measured for crown-based species. Consequently, the tiara motif appears to be at least as equally useful for constructing tunable multimetallic species as the more commonly encountered crown motif; a comprehensive set of titration data collected in an acetonitrile solution support this conclusion as well. Because the use of acyclic tiaras avoids the need for tedious and/or time-intensive syntheses of macrocyclic structures, these findings suggest that tiara motifs could be broadly advantageous in the design of ligands to support multimetallic chemistry.
环状“冠醚”和非环状“头饰”聚醚都被认为可用于结合金属阳离子并促进多金属配合物的组装。然而,基于非环状聚醚构建的异双金属配合物的性质尚未得到应有的关注。在此,报道了一族八种氧化还原活性异双金属配合物的合成与表征,这些配合物将镍中心与结合在非环状聚醚“头饰”部分的二级氧化还原惰性阳离子(K、Na、Li、Sr、Ca、Zn、La和Lu)配对。对异双金属配合物的单金属镍前体配合物以及与K、Li、Sr、Zn和Lu形成的加合物进行了X射线衍射分析的结构研究;结果证实了二级阳离子在头饰位点的结合,并表明头饰部分比密切相关的大环“冠醚”配体的类似18-冠-6样部分具有更大的构象灵活性。然而,光谱和电化学研究表明,基于头饰的异双金属物种的稳定性和阳离子驱动的可调性与先前测量的基于冠醚的物种非常相似。因此,头饰基序似乎至少与更常见的冠醚基序一样,对于构建可调谐的多金属物种同样有用;在乙腈溶液中收集的一组全面的滴定数据也支持这一结论。由于使用非环状头饰避免了繁琐和/或耗时的大环结构合成,这些发现表明头饰基序在设计支持多金属化学的配体方面可能具有广泛的优势。