Department of Chemistry and INSTM Research Unit, University of Pavia, Via Taramelli 12, 27100, Pavia, Italy.
Institute of Nanoscience and Nanotechnology, National Center for Scientific Research "Demokritos", Patr. Grigoriou E' & 27 Neapoleos str., 15341, Agia Paraskevi, Greece.
Chempluschem. 2021 Feb;86(2):270-274. doi: 10.1002/cplu.202100039.
Herein, we report the synthesis and characterization of homochiral macrocycles, in which molecular rigidity, combined with the presence of multiple functional groups, allow for the assembly of helical nanostructures. 1,1'-bi-2-naphthol (Binol) units are used as robust chirality inducers, and pyridyl units embedded within the molecular frameworks allow the assembly, upon coordination with Pd(II) metal ions, of the macrocyclic building blocks. CD and NMR spectroscopies show the formation of ordered 1D assembly in solution. AFM studies indicate that the molecular systems are capable of forming nanoscale structures. The effective transfer of chiral information results in helical nanofibers, with lengths ranging from a few hundreds of nanometers to some micrometers. AFM line profiles reveal a helical longitudinal period of about 50 nm and a transverse width of 25 to 45 nm after deconvolution.
本文报道了手性大环的合成与表征,其中分子的刚性,加上多个官能团的存在,允许组装螺旋纳米结构。1,1'-双-2-萘酚(Binol)单元用作稳定的手性诱导剂,并且分子骨架中嵌入的吡啶单元允许在与 Pd(II)金属离子配位时组装大环构建块。CD 和 NMR 光谱表明在溶液中形成有序的一维组装。AFM 研究表明,分子体系能够形成纳米级结构。手性信息的有效传递导致形成螺旋纳米纤维,长度从几百纳米到几微米不等。AFM 线轮廓分析显示,经过去卷积后,螺旋的纵向周期约为 50nm,横向宽度为 25 到 45nm。