Ruan Guilin, Fridman Natalia, Maayan Galia
Schulich Faculty of Chemistry, Technion-Israel Institute of Technology, Haifa 32000, Israel.
ACS Omega. 2024 Sep 26;9(40):42002-42009. doi: 10.1021/acsomega.4c06987. eCollection 2024 Oct 8.
Studies on a series of molecular dicopper peptoid complexes showed that the Cu···Cu distances measured in X-ray single-crystal diffraction are typically in the range of 4.2-6.9 Å. Herein, we designed a new peptoid, , having 2,2'-bipyridine, propyl, and pyridyl side chains and discovered that although it forms a typical dicopper self-assembled structure (complex ), the Cu···Cu distance is exceedingly long -8.043 Å. By analyzing its structure and surface properties in comparison to a control Cu-peptoid complex (), in which the pyridyl side chain is modified by an ethanolic side chain, we suggest that the long Cu···Cu distance is contributed by the hydrophilic-hydrophobic interaction influenced by the pyridyl side chain and the steric hindrance of the propyl side chain. This result may motivate the use of dinuclear Cu peptoid complexes for wider applications, such as cooperative catalysis and luminescence.
对一系列分子双核铜类肽配合物的研究表明,在X射线单晶衍射中测得的Cu···Cu距离通常在4.2 - 6.9 Å范围内。在此,我们设计了一种具有2,2'-联吡啶、丙基和吡啶基侧链的新型类肽,并发现尽管它形成了典型的双核铜自组装结构(配合物),但其Cu···Cu距离极长——8.043 Å。通过与一种对照铜类肽配合物()进行比较分析其结构和表面性质,在对照配合物中吡啶基侧链被乙醇侧链修饰,我们认为长Cu···Cu距离是由吡啶基侧链影响的亲水 - 疏水相互作用以及丙基侧链的空间位阻造成的。这一结果可能会促使双核铜类肽配合物在更广泛的应用中得到使用,如协同催化和发光。